that are potent inhibitors of the class of enzymes known as cyclin dependent kinases, which relate to the catalytic subunits cdk1-9 and their regulatory subunits know as cyclins A-H.
This invention also provides a novel method of treating cancer or other proliferative diseases by administering a therapeutically effective amount of one of these compounds or a pharmaceutically acceptable salt form thereof. Alternatively, one can treat cancer or other proliferative diseases by administering a therapeutically effective combination of one of the compounds of the present invention and one or more other known anti-cancer or anti-proliferative agents.
[0001] This invention relates generally to novel 5-substituted-indeno[1,2-c]pyrazol-4-ones which are useful as cyclin dependent kinase (cdk) inhibitors, pharmaceutical compositions comprising the same, methods for using the same for treating proliferative diseases, and intermediates and processes for making the same.
[0002] One of the most important and fundamental processes in biology is the division of cells mediated by the cell cycle. This process ensures the controlled production of subsequent generations of cells with defined biological function. It is a highly regulated phenomenon and responds to a diverse set of cellular signals both within the cell and from external sources. A complex network of tumor promoting and suppressing gene products are key components of this cellular signaling process. Over expression of the tumor promoting components or the subsequent loss of the tumor suppressing products will lead to unregulated cellular proliferation and the generation of tumors (Pardee, Science 246:603-608, 1989).
[0003] Cyclin dependent kinases (cdks) play a key role in regulating the cell cycle machinery. These complexes consist of two components: a catalytic subunit (the kinase) and a regulatory subunit (the cyclin). To date, nine kinase subunits (cdk 1-9) have been identified along with several regulatory subunits (cyclins A-H).(A. M. Senderowicz and E. A. Sausville Journal of the National Cancer Institute (2000), 92 (5), 376-387; and S. Mani; C. Wang; K. Wu; R. Francis; R. Pestell Exp. Opin. Invest. Drugs (2000) 9(8), 1849-1870).
[0004] Each kinase associates with a specific regulatory partner and together make up the active catalytic moiety. Each transition of the cell cycle is regulated by a particular cdk complex: G1l/S by cdk2/cyclin E, cdk4/cyclin D1 and cdk6/cyclinD2; S/G2 by cdk2/cyclin A and cdkl/cyclin A; G2/M by cdk1/B. The coordinated activity of these kinases guides the individual cells through the replication process and ensures the vitality of each subsequent generation (Sherr, Cell 73:1059-1065, 1993; Draetta, Trends Biochem. Sci. 15:378-382, 1990)
[0005] An increasing body of evidence has shown a link between tumor development and cdk related malfunctions. Over expression of the cyclin regulatory proteins and subsequent kinase hyperactivity have been linked to several types of cancers (Jiang, Proc. Natl. Acad. Sci. USA 90:9026-9030, 1993; Wang, Nature 343:555-557, 1990). More recently, endogenous, highly specific protein inhibitors of cdks were found to have a major affect on cellular proliferation (Kamb et al, Science 264:436-440, 1994; Beach, Nature 336:701-704, 1993). These inhibitors include p
[0006] Protein kinases, in particular, CDK, play a role in the regulation of cellular proliferation. Therefore, CDK inhibitors could be useful in the treatment of cell proliferative disorders such as cancer, familial adenomatosis polyposis, neuro-fibromatosis, psoriasis, fungal infections, endotoxic shock, trasplantaion rejection, vascular smooth cell proliferation associated with atherosclerosis, pulmonary fibrosis, arthritis glomerulonephritis and post-surgical stenosis and restenosis (U.S. Pat. No. 6,114,365). CDKs are also known to play a role in apoptosis.
[0007] Therefore CDK inhibitors, could be useful in the treatment of useful of cancer; viral infections, for example, herpevirus, poxyirus, Epstein-Barr virus, Sindbis virus and adenovirus; prevention of AIDS development in HIV-infected individuals; autoimmune diseases, for example, systemic lupus, erythematosus, autoimmune mediated glomerulonephritis, rheumatoid arthritis, psoriasis, inflammatory bowel disease, and autoimmune diabetes mellitus; neurodegenerative disorders, for example, Alzheimer's disease, AIDS-related dementia, Parkinson's disease, amyotrophic lateral sclerosis, retinitis pigmentosa, spinal muscular atrophy and cerebellar degeneration; myelodysplastic syndromes, aplastic anemia, ischemic injury associated with myocardial infarctions, stroke and reperfusion injury, arrhythmia, atherosclerosis, toxin-induced or alcohol related liver diseases, hematological diseases, for example, chronic anemia and aplastic anemia; degenerative diseases of the musculoskeletal system, for example, osteoporosis and arthritis, aspirin-sensitive rhinosinusitis, cystic fibrosis, multiple sclerosis, kidney diseases and cancer pain (U.S. Pat. No. 6,107,305).
[0008] It has also been discovered that some cyclin-dependent kinase inhibitors can be used in combination therapy with some other anticancer agents. For example, the cytotoxic activity of the cyclin-dependent kinase inhibitor, flavopiridol, has been used with other anticancer agents in cancer combination therapy. Cancer Research, 57, 3375 (1997).
[0009] Also, it has recenly been disclosed that CDK inhibitors may be useful in the chemoprevention of cancer. Chemoprevention is defined as inhibiting the development of invasive cancer by either blocking the initiating mutagenic event or by blocking the progression of pre-malignant cells that have already suffered an insult or inhibiting tumor relapse (U.S. Pat. No. 6,107,305).
[0010] Furthermore, it has recently been discovered that cdk5 is involved in the phosphorylation of tau protein, and therefore CDK inhibitors may be useful in the treatment of Alzheimer's disease (J. Biochem., 117, 741-749, 1995).
[0011] This body of evidence has led to an intense search for small molecule inhibitors of the cdk family as an approach to cancer chemotherapy. There are no known examples of molecules related to the current invention which describe 5-substituted-indeno[1,2-c]pyrazoles as cdk inhibitors. There is one case describing indeno[1,2-c]pyrazoles having anticancer activity. There are two other examples which describe indeno[1,2-c]pyrazoles having unrelated utilities and structures.
[0012] A series of indeno[1,2-c]pyrazoles having anticancer activity are described in JP 60130521 and JP 62099361 with the following generic structure:
[0013] No substitution is claimed on the indenophenyl portion of the molecule and the molecules are not indicated to be cdk inhibitors. In addition, we discovered that substitution at the 5-position was critical for cdk inhibitory activity.
[0014] A series of indeno[1,2-c]pyrazoles having herbicidal activity are described in GB 2223946 with the following generic structure:
[0015] The above compounds differ from the presently claimed invention in X
[0016] A series of 1-(6′-substituted-4′-methylquinol-2′-yl)-3-methylinden
o[1,2-c]pyrazoles having CNS activity are described by Quraishi, Farmaco 44:753-8, 1989 with the following generic structure:
[0017] Compounds of this series are not considered to be part of the presently claimed invention.
[0018] The present invention describes a novel class of indeno[1,2-c]pyrazol-4-ones or pharmaceutically acceptable salt forms thereof that are potent inhibitors of the class of enzymes known as cyclin dependent kinases, which relate to the catalytic subunits cdk 1-9 and their regulatory subunits know as cyclins A-H.
[0019] It is another object of this invention to provide a novel method of treating proliferative diseases associated with CDK activity by administering a therapeutically effective amount of one of the compounds of the invention or a pharmaceutically acceptable salt form thereof.
[0020] It is another object of this invention to provide a novel method of treating cancer associated with CDK activity by administering a therapeutically effective amount of one of the compounds of the invention or a pharmaceutically acceptable salt form thereof.
[0021] It is another object of this invention to provide a novel method of treating a proliferative disease, which comprises administering a therapeutically effective combination of one of the compounds of the present invention and one or more other known anti-cancer treatments such as radiation therapy, chemotoxic or chemostatic agents.
[0022] These and other objectives have been achieved by the inventors' discovery that compounds of formula (I):
[0023] wherein R
[0024] The invention pertains to novel cyclin dependent kinase inhibitors (cdks) and specifically, but not exclusively, as inhibitors of cdk/cyclin complexes. The inhibitors of this invention are indeno[1,2-c]pyrazol-4-one analogs. Certain analogs were selective for their activity against cdks and their cyclin bound complexes and were less active against other known serine/threonine kinases such as Protein Kinase A (PKA) and Protein Kinase C (PKC).
[0025] As described herein, the inhibitors of this invention are capable of inhibiting the cell-cycle machinery and consequently would be useful in modulating cell-cycle progression, which would ultimately control cell growth and differentiation. Such compounds would be useful for treating subjects having disorders associated with excessive cell proliferation, such as the treatment of cancer, psoriasis, immunological disorders involving unwanted leukocyte proliferation, in the treatment of restinosis and other smooth muscle cell disorders, and the like.
[0026] [1] The present invention, in a first embodiment, describes novel compounds of formula (I):
[0027] or stereoisomers, pharmaceutically acceptable salts, and prodrugs thereof, wherein:
[0028] X is selected from the groups: O, S, and NR;
[0029] R is selected from the groups: H, C
[0030] R
[0031] R
[0032] R
[0033] alternatively, when two Ra's are present on adjacent carbon atoms they combine to form —OCH
[0034] R
[0035] R
[0036] R
[0037] R
[0038] R
[0039] alternatively, R
[0040] R
[0041] R
[0042] R
[0043] R
[0044] R
[0045] alternatively, R
[0046] R
[0047] R
[0048] R
[0049] R
[0050] m is independently selected from 0, 1, 2, 3, and 4;
[0051] provided that: when R
[0052] [2] In another embodiment, the invention describes novel compounds of formula (I):
[0053] or stereoisomers, pharmaceutically acceptable salts, and prodrugs thereof, wherein:
[0054] X is selected from the groups: O, S, and NR;
[0055] R is selected from the groups: H, C
[0056] R
[0057] R
[0058] alternatively, when two R
[0059] R
[0060] R
[0061] R
[0062] R
[0063] R
[0064] alternatively, R
[0065] R
[0066] R
[0067] R
[0068] R
[0069] R
[0070] alternatively, R
[0071] R
[0072] R
[0073] R
[0074] R
[0075] m is independently selected from 0, 1, 2, 3, and 4; provided that:
[0076] 1) when R
[0077] 2)when R
[0078] R
[0079] [3] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S;
[0080] R
[0081] R
[0082] R
[0083] R4 is H, C
[0084] R
[0085] [4] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S;
[0086] R
[0087] R
[0088] OR
[0089] R
[0090] R
[0091] OR
[0092] C
[0093] [5] In another embodiment, the invention describes novel compounds of embodiment [1], wherein
[0094] X is O or S;
[0095] R
[0096] R
[0097] R
[0098] R
[0099] R
[0100] R
[0101] R
[0102] R
[0103] R
[0104] R
[0105] m is independently selected from the group consisting of 1 2, 3 and 4.
[0106] [6] In another embodiment, the invention describes novel compounds of embodiment [1], wherein
[0107] R
[0108] [7] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S; and
[0109] R
[0110] [8] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S; and
[0111] R
[0112] R
[0113] R
[0114] R
[0115] R
[0116] R
[0117] [9] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S;
[0118] R
[0119] R
[0120] R
[0121] R
[0122] [10] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0123] R
[0124] R
[0125] [11] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0126] R
[0127] R
[0128] [12] In another embodiment, the invention describes novel compounds of embodiment [1], wherein
[0129] R
[0130] R
[0131] R
[0132] [13] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S;
[0133] R
[0134] R
[0135] R
[0136] R
[0137] [14] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S;
[0138] R
[0139] R
[0140] R
[0141] R
[0142] [15] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S; and
[0143] R
[0144] [16] In another embodiment, the invention describes novel compounds of embodiment [1], wherein X is O or S;
[0145] R
[0146] R
[0147] [17] In another embodiment, the invention describes novel compounds of embodiment [1], wherein
[0148] R
[0149] R
[0150] R
[0151] [18] In another embodiment, the invention describes novel compounds of embodiment [1], wherein
[0152] R
[0153] R
[0154] R
[0155] [19] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0156] [20] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0157] [21] In another embodiment, the invention describes 6novel compounds of embodiment [1], wherein R
[0158] [22] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0159] [23] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0160] [24] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0161] R
[0162] [25] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0163] R
[0164] R
[0165] [26] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0166] R
[0167] R
[0168] R
[0169] R
[0170] [27] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0171] R
[0172] R
[0173] [28] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0174] [29] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0175] R
[0176] [30] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0177] [31] In another embodiment, the invention describes novel compounds of embodiment [1], wherein R
[0178] R
[0179] [32] In another embodiment, the invention describes novel compounds of embodiment [1], which is selected from Table 1.
[0180] [33] In another embodiment, the invention describes novel compounds of embodiment [1], which is selected from Table 2.
[0181] [34] In another embodiment, the invention describes novel compounds of embodiment [1], which is selected from Table 3.
[0182] [35] In another embodiment, the invention describes novel compounds of embodiment [1], which is selected from Table 4.
[0183] [36] In another embodiment, the invention describes novel compounds of embodiment [1], selected from:
[0184] 3-(4-methoxyphenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0185] 3-phenyl-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0186] 3-(4-methylthiophenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-o ne;
[0187] 3-(4-methanesulfonylphenyl)-5-(acetamido)indeno[1,2-c]pyrazo l-4-one;
[0188] 3-(4-(N,N-dimethylamino)phenyl)-5-(acetamido)indeno[1,2-c]py razol-4-one;
[0189] 3-(3-pyridyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0190] 3-(4-methoxyphenyl)-5-(formamido)indeno[1,2-c]pyrazol-4-one;
[0191] 3-(4-hydroxyphenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0192] 3-(4-piperidinophenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-o ne;
[0193] 3-(4-morpholinophenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-o ne;
[0194] 3-(4-ethoxyphenyl)-5-(acetamido) indeno[1,2-c]pyrazol-4-one;
[0195] 3-(4-butylphenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0196] 3-(4-ethylphenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0197] 3-(4-n-propylphenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one ;
[0198] 3-(4-methoxyphenyl)-5-((4-aminophenyl)acetamido)indeno[1,2-a c]pyrazol-4-one;
[0199] 3-(4-pyridyl)-5-(formamido)indeno[1,2-c]pyrazol-4-one;
[0200] 3-(4-pyridyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0201] 3-(4-methoxyphenyl)-5-((4-aminophenyl)acetamido)indeno[1,2-c ]pyrazol-4-one;
[0202] 3-(4-methoxyphenyl)-5-((4-azidophenyl)acetamido)indeno[1,2-c ]pyrazol-4-one;
[0203] 3-(4-methoxyphenyl)-5-((4-(methoxycarbonylamino)phenyl) acetamido)indeno[1,2-c]pyrazol-4-one;
[0204] 3-(4-methoxyphenyl)-5-((4-(aminomethylcarbonylamino)phenyl) acetamido)indeno[1,2-c]pyrazol-4-one;
[0205] 3-(4-methoxyphenyl)-5-((4-((N,N-dimethylamino)methylcarbonyl amino)phenyl)acetamido)indeno[1,2-c]pyrazol-4-one;
[0206] 3-(4-methoxyphenyl)-5-((4-acetamidophenyl)acetamido) indeno[1,2-c]pyrazol-4-one;
[0207] 3-(4-methoxyphenyl)-5-(pyrrolidinoacetamido)indeno[1,2-c]pyr azol-4-one;
[0208] 3-(4-methoxyphenyl)-5-(morpholinoacetamido)indeno[1,2-c]pyra zol-4-one;
[0209] 3-(4-methoxyphenyl)-5-(thiomnorpholinoacetainido)indeno[1,2- c]pyrazol-4-one;
[0210] 3-(4-methoxyphenyl)-5-(ethylaminoacetamido)indeno[1,2-c]pyra zol-4-one;
[0211] 3-(4-mnethoxyphenyl)-5-(piperidinoacetamido)indeno[1,2-c]pyr azol-4-one;
[0212] 3-(4-mnethoxyphenyl)-5-(4-(aminomethyl)piperidinoacetamnido) indeno[1,2-c]pyrazol-4-one;
[0213] 3-(4-methoxyphenyl)-5-(piperazinoacetamido)indeno[1,2-c]pyra zol-4-one;
[0214] 3-(4-methoxyphenyl)-5-(4-methylpiperazinoacetamnido) indeno[1,2-c]pyrazol-4-one;
[0215] 3-(4-methoxyphenyl)-5-(4-(2-hydroxyethyl)piperazinoacetamnid o)indeno[1,2-c]pyrazol-4-one;
[0216] 3-(4-methoxyphenyl)-5-(N,N-dimnethylaminoacetamnido) indeno [1,2-c]pyrazol-4-one;
[0217] 3-(4-methoxyphenyl)-5-((2-hydroxyethyl) aminoacetamnido) indeno [1,2-c]pyrazol-4-one;
[0218] 3-(4-methoxyphenyl)-5-(amninoacetamido)indeno[1,2-c]pyrazol- 4-one;
[0219] 3-(4-methoxyphenyl)-5-((2-chlorophenyl)acetamnido) indeno[1,2-c]pyrazol-4-one;
[0220] 3-(4-methoxyphenyl)-5-((2,4-dichlorophenyl) acetamido)indeno[1,2-c]pyrazol-4-one;
[0221] 3-(4-methoxyphenyl)-5-((3, 4-dichlorophenyl) acetamido) indeno[1,2-c]pyrazol-4-one;
[0222] 3-(4-methoxyphenyl)-5-((2-methoxyphenyl) acetamido) indeno[1,2-c]pyrazol-4-one;
[0223] 3-(4-dimethoxyphenyl)-5-(3-thienylacetamido)indeno[1,2-c]pyr azol-4-one;
[0224] 3-(4-methoxyphenyl)-5-((3,4-methylenedioxyphenyl)acetamido) indeno[1,2-c]pyrazol-4-one;
[0225] 3-(3,4-dimethoxyphenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4- one;
[0226] 3-(2-methoxyphenyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0227] 3-(4-methoxyphenyl)-5-((2,5-dimethoxyphenyl)acetamido) indeno[1,2-c]pyrazol-4-one;
[0228] 3-(4-methoxyphenyl)-5-((3,4-dimethoxyphenyl)acetamido) indeno[1,2-c]pyrazol-4-one;
[0229] 3-(4-methoxyphenyl)-5-((4-methoxyphenyl)acetamido) indeno[1,2-c]pyrazol-4-one;
[0230] 3-(4-methoxyphenyl)-5-((3-methoxyphenyl)acetamido)indeno[1,2 -c]pyrazol-4-one;
[0231] 3-(4-methoxyphenyl)-5-((4-chlorophenyl)acetamido)indeno[1,2- c]pyrazol-4-one;
[0232] 3-(4-methoxyphenyl)-5-((butylcarbamoyl)amino)indeno[1,2]pyra zol-4-one;
[0233] 3-(4-methoxyphenyl)-5-((4-aminobenzylcarbamoyl)amino)indeno [1,2-c]pyrazol-4-one;
[0234] 3-(4-methoxyphenyl)-5-((4-pyridylcarbamoyl) amino)indeno[1,2-c]pyrazol-4-one;
[0235] 3-(4-methoxyphenyl)-5-((phenylcarbamoyl)amino)indeno[1,2-c]p yrazol-4-one;
[0236] 3-(4-methoxyphenyl)-5-(cyclobutanecarboxamido)indeno[1,2-c]p yrazol-4-one;
[0237] 3-(4-methoxyphenyl)-5-(cyclopentanecarboxamido)indeno[1,2-c] pyrazol-4-one;
[0238] 3-(4-methoxyphenyl)-5-(butanamido)indeno[1,2-c]pyrazol-4-one ;
[0239] 3-(4-methoxyphenyl)-5-(propanamido)indeno[1,2-c]pyrazol-4-on e;
[0240] 3-(4-methoxyphenyl)-5-(phenylacetamido)indeno[1,2-c]pyrazol- 4-one;
[0241] 3-(4-methoxyphenyl)-5-(2-methylpropanamido)indeno[1,2-c]pyra zol-4-one;
[0242] 3-(4-methoxyphenyl)-5-(cyclopropanecarboxamido)indeno[1,2-c] pyrazol-4-one;
[0243] 3-(4-methoxyphenyl)-5-(chloroacetamido)indeno[1,2-c]pyrazol- 4-one;
[0244] 3-(4-methoxyphenyl)-5-(4-(aminomethyl)piperidinoacetamido)-i ndeno[1,2-c]pyrazol-4-one;
[0245] 3-(4-(N,N-dimethylamino)phenyl)-5-(morpholinoacetamido)inden o[1,2-c]pyrazol-4-one;
[0246] 3-(4-(N,N-dimethylamino)phenyl)-5-(N,N-dimethylaminoacetamid o)indeno[1,2-c]pyrazol-4-one;
[0247] 3-(4-(trifluoromethyl)phenyl)-5-(acetamido)indeno[1,2-c]pyra zol-4-one;
[0248] 3-(4-(N,N-dimethylamino)phenyl)-5-(4-methyl-piperazinoacetam ido)indeno[1,2-c]pyrazol-4-one;
[0249] 3-(4-(N,N-dimethylamino)phenyl)-5-(4-(aminomethyl)-piperidin oacetamido)indeno[1,2-c]pyrazol-4-one;
[0250] 3-(4-(N,N-dimethylamino)phenyl)-5-(4-hydroxy-piperidinoaceta mido)indeno[1,2-c]pyrazol-4-one;
[0251] 3-(4-morpholinophenyl)-5-(morpholinoacetamido)indeno[1,2-c]p yrazol-4-one;
[0252] 3-(4-morpholinophenyl)-5-(4-methylpiperazinoacetamido)indeno [1,2-c]pyrazol-4-one;
[0253] 3-(4-morpholinophenyl)-5-(4-hydroxy-piperidinoacetamido)inde no[1,2-c]pyrazol-4-one;
[0254] 3-(4-morpholinophenyl)-5-(4-(aminomethyl)-piperidinoacetamid o)indeno[1,2-c]pyrazol-4-one;
[0255] 3-(4-piperazinophenyl)-5-(morpholinoacetamido)indeno[1,2-c]p yrazol-4-one;
[0256] 3-(4-piperazinophenyl)-5-((N,N-dimethylamino)acetamido)inden o[1,2-c]pyrazol-4-one;
[0257] 3-(4-piperazinophenyl)-5-(4-methylpiperazinoacetamido)indeno [1,2-c]pyrazol-4-one;
[0258] 3-(4-piperazinophenyl)-5(4-(aminomethyl)-piperidinoacetamido )indeno[1,2-c]pyrazol-4-one;
[0259] 3-(4-piperazinophenyl)-5-(carbamoylamino)indeno[1,2-c]pyrazo l-4-one;
[0260] 3-(4-piperazinophenyl)-5-(aminocarbamoylamino)indeno[1,2-c]p yrazol-4-one;
[0261] 3-(4-piperazinophenyl)-5-(morpholinocarbamoylamino)-indeno[1 ,2-c]pyrazol-4-one;
[0262] 3-(4-(4-methylpiperazino)phenyl)-5-(morpholinocarbamoylamino )indeno[1,2-c]pyrazol-4-one;
[0263] 3-(4-(4-ethylpiperazino)phenyl)-5-(morpholinocarbamoylamino) indeno[1,2-c]pyrazol-4-one;
[0264] 3-(4-(4-isopropylpiperazino)phenyl)-5-(morpholinocarbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0265] 3-(4-(4-t-butoxycarbonylpiperazino)phenyl)-5-(morpholinocarb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0266] 3-(4-(N,N-dimethylamino)phenyl)-5-((4-methylpiperazino)-carb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0267] 3-(c-propyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0268] 3-(2-thienyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-one;
[0269] 3-(3-methyl-2-thienyl)-5-(acetamido)indeno[1,2-c]pyrazol-4-o ne;
[0270] 3-(ethyl)-5-(carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0271] 3-(n-propyl)-5-(carbamoylamino)aminoindeno[1,2-c]pyrazol-4-o ne;
[0272] 3-(i-propyl)-5-(carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0273] 3-(c-propyl)-5-(carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0274] 3-(c-hexyl)-5-(carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0275] 3-(2-thienyl)-5-(carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0276] 3-(3-methyl-2-thienyl)-5-(carbamoylamino)indeno[1,2-c]pyrazo l-4-one;
[0277] 3-(5-methyl-2-thienyl)-5-(carbamoylamino)indeno[1,2-c]pyrazo l-4-one;
[0278] 3-(5-carboethoxy-2-thienyl)-5-(carbamoylamino)indeno[1,2-c]p yrazol-4-one;
[0279] 3-(3-thienyl)-5-(carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0280] 3-(1-methyl-3-pyrrolyl)-5-(carbamoylamino)indeno[1,2-c]pyraz ol-4-one;
[0281] 3-(2,5-dimethyl-3-thienyl)-5-(carbamoylamino)indeno[1,2-c]py razol-4-one;
[0282] 3-(2-furanyl)-5-(carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0283] 3-(i-propyl)-5-((N,N-dimethylaminocarbamoyl)amino)indeno[1,2 -c]pyrazol-4-one;
[0284] 3-(c-propyl)-5-((N,N-dimethylaminocarbamoyl)amino)indeno[1,2 -c]pyrazol-4-one;
[0285] 3-(c-hexyl)-5-((N,N-dimethylaminocarbamoyl)amino)indeno[1,2- c]pyrazol-4-one;
[0286] 3-(2-thienyl)-5-((N,N-dimethylaminocarbamoyl)amino)indeno[1, 2-c]pyrazol-4-one;
[0287] 3-(5-methoxy-2-thienyl)-5-((N,N-dimethylaminocarbamoyl)amino )indeno[1,2-c]pyrazol-4-one;
[0288] 3-(5-methyl-2-thienyl)-5-((N,N-dimethylaminocarbamoyl)amino) indeno[1,2-c]pyrazol-4-one;
[0289] 3-(5-carboethoxy-2-thienyl)-5-((N,N-dimethylaminocarbamoyl)a mino)indeno[1,2-c]pyrazol-4-one;
[0290] 3-(3-thienyl)-5-((N,N-dimethylaminocarbamoyl)amino)indeno[1, 2-c]pyrazol-4-one;
[0291] 3-(5-chloro-3-thienyl)-5-((N,N-dimethylaminocarbamoyl)amino) indeno[1,2-c]pyrazol-4-one;
[0292] 3-(2,5-dimethyl-3-thienyl)-5-((N,N-dimethylaminocarbamoyl)am ino)indeno[1,2-c]pyrazol-4-one;
[0293] 3-(2-furanyl)-5-((N,N-dimethylaminocarbamoyl)amino)indeno[1, 2-c]pyrazol-4-one;
[0294] 3-(i-propyl)-5-((4-carbamoylpiperidino)acetamido)indeno[1,2- c]pyrazol-4-one;
[0295] 3-(c-hexyl)-5-((4-carbamoylpiperidino)acetamido)indeno[1,2-c ]pyrazol-4-one;
[0296] 3-(ethyl)-5-(4-(aminomethyl)piperidinoacetamido)indeno[1,2-c ]pyrazol-4-one;
[0297] 3-(i-propyl)-5-(4-(aminomethyl)piperidinoacetamido) indeno[1,2-c]pyrazol-4-one;
[0298] 3-(c-propyl)-5-(4-(aminomethyl)piperidinoacetamido) indeno[1,2-c]pyrazol-4-one;
[0299] 3-(c-hexyl)-5-(4-(aminomethyl)piperidinoacetamido) indeno[1,2-c]pyrazol-4-one;
[0300] 3-(i-propyl)-5-((4-methylpiperazino)-carbamoylamino)indeno[1 ,2-c]pyrazol-4-one;
[0301] 3-(5-carboethoxy-2-thienyl)-5-((4-methylpiperazino)-carbamoy lamino)indeno[1,2-c]pyrazol-4-one;
[0302] 3-(5-carboxyl-2-thienyl)-5-((4-methylpiperazino)-carbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0303] 3-(2,5-dimethyl-3-thienyl)-5-((4-methylpiperazino)-carbamoyl amino)indeno[1,2-c]pyrazol-4-one;
[0304] 3-(i-propyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazo l-4-one;
[0305] 3-(1-methoxycarbonyl-4-piperidinyl)-5-(morpholinocarbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0306] 3-(5-methyl-2-thienyl)-5-(morpholinocarbamoylamino)indeno[1, 2-c]pyrazol-4-one;
[0307] 3-(5-chloro-3-thienyl)-5-(morpholinocarbamoylamino)indeno[1, 2-c]pyrazol-4-one;
[0308] 3-(2,5-dimethyl-3-thienyl)-5-(morpholinocarbamoylamino)inden o[1,2-c]pyrazol-4-one;
[0309] 3-(5-carboethoxy-2-thienyl)-5-(morpholinylcarbamoylamino)ind eno[1,2-c]pyrazol-4-one;
[0310] 3-(5-carboxyl-2-thienyl)-5-(morpholinylcarbamoylamino)indeno [1,2-c]pyrazol-4-one;
[0311] 3-(5-(benzylaminocarbonyl)-2-thienyl)-5-(morpholinocarbamoyl amino)indeno[1,2-c]pyrazol-4-one;
[0312] 3-(5-((4-methylpiperazino)carbonyl)-2-thienyl)-5-(morpholino carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0313] 3-(5-((2-(1-methyl-2-pyrrolidinyl)ethyl)aminocarbonyl)-2-thi enyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one ;
[0314] 3-(5-((N,N-dimethylamino)aminocarbonyl)-2-thienyl-5-(morphol inocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0315] 3-(5-((2-(N,N-dimethylamino)ethyl)aminocarbonyl)-2-thienyl-5 -(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0316] 3-(5-(2-pyrrolidinoethyl)aminocarbonyl)-2-thienyl-5-(morphol inocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0317] 3-(5-(2-morpholinoethyl)aminocarbonyl)-2-thienyl)-5-(morphol inocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0318] 3-(5-(morpholinocarbonyl)-2-thienyl)-5-(morpholinocarbamoyla mino)indeno[1,2-c]pyrazol-4-one;
[0319] 3-(5-((3-(2-pyrrolidon-1-yl)propyl)aminocarbonyl)-2-thienyl- 5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0320] 3-(5-((2-(3-pyridyl)ethyl)aminocarbonyl)-2-thienyl)-5-(morph olinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0321] 3-(5-((3-(1-imidazolyl)propyl)aminocarbonyl)-2-thienyl)-5-(m orpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0322] 3-(5-((2-(2-pyridyl)ethyl)aminocarbonyl)-2-thienyl)-5-(morph olinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0323] 3-(5-((2-pyridyl)methyl)aminocarbonyl)-2-thienyl)-5-(morphol inocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0324] 3-(5-((2-piperidinoethyl)aminocarbonyl)-2-thienyl)-5-(morpho linocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0325] 3-(4-piperazinophenyl)-5-((N,N-dimethylamino)carbamoylamino) -indeno[1,2-c]pyrazol-4-one;
[0326] 3-(4-(4-methylpiperazino)phenyl)-5-((N,N-dimethylamino)-carb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0327] 3-(4-piperazinophenyl)-5-((4-methylpiperazino)carbamoylamino )-indeno[1,2-c]pyrazol-4-one;
[0328] 3-(4-(4-methylpiperazino)phenyl)-5-((4-methylpiperazino)-car bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0329] 3-(4-(4-ethylpiperazino)phenyl)-5-((4-methylpiperazino)-carb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0330] 3-(4-(4-isopropylpiperazino)phenyl)-5-((4-methylpiperazino)- carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0331] 3-(4-piperazinophenyl)-5-((2,6-dimethylpiperidino)-carbamoyl amino)indeno[1,2-c]pyrazol-4-one;
[0332] 3-(4-piperazinophenyl)-5-((4-(2-hydroxyethyl)piperazino)-car bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0333] 3-(4-piperazinophenyl)-5-((2(R)-(methoxymethyl)pyrrolidino)- carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0334] 3-(4-piperazinophenyl)-5-((2(S)-(methoxymethyl)pyrrolidino)- carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0335] 3-(4-piperazinophenyl)-5-((2(R)-(1-methoxy-1-methylethyl)-py rrolidino)carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0336] 3-(4-piperazinophenyl)-5-((2(S)-(1-methoxy-1-methylethyl)-py rrolidino)carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0337] 3-(4-piperazinophenyl)-5-((2(R)-(hydroxymethyl)-pyrrolidino) carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0338] 3-(4-piperazinophenyl)-5-((2(S)-(hydroxymethyl)-pyrrolidino) carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0339] 3-(4-piperazinophenyl)-5-((2(R)-(benzyloxymethyl)-pyrrolidin o)carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0340] 3-(4-piperazinophenyl)-5-((2(S)-(benzyloxymethyl)-pyrrolidin o)carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0341] 3-(4-(3-methylpiperazino)phenyl)-5-(morpholinocarbamoylamino )indeno[1,2-c]pyrazol-4-one;
[0342] 3-(4-(cis-3,5-dimethylpiperazino)phenyl)-5-(morpholinocarbam oylamino)indeno[1,2-c]pyrazol-4-one;
[0343] 3-(4-(cis-3,4,5-trimethylpiperazino)phenyl)-5-(morpholinocar bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0344] 3-(4-(4-isopropylpiperazino)-2-methylphenyl)-5-(morpholinoca rbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0345] 3-(4-homopiperazinophenyl)-5-(morpholinocarbamoylamino)-inde no[1,2-c]pyrazol-4-one;
[0346] 3-(4-(4-methylhomopiperazino)phenyl)-5-(morpholinocarbamoyla mino)indeno[1,2-c]pyrazol-4-one;
[0347] 3-(4-(4-ethylhomopiperazino)phenyl)-5-(morpholinocarbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0348] 3-(4-(4-isopropylhomopiperazino)phenyl)-5-(morpholinocarbamo ylamino)indeno[1,2-c]pyrazol-4-one;
[0349] 3-(4-homopiperazino-2-methylphenyl)-5-(morpholinocarbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0350] 3-(4-(4-ethylhomopiperazino)-2-methylphenyl)-5-(morpholinoca rbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0351] 3-(4-(4-isopropylhomopiperazino)-2-methylphenyl)-5-(morpholi nocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0352] 3-(4-(4-(N,N-dimethylamino)piperidino)phenyl)-5-(morpholinoc arbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0353] 3-(4-(4-(N,N-diethylamino)piperidino)phenyl)-5-(morpholinoca rbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0354] 3-(4-(4-piperidinopiperidino)phenyl)-5-(morpholinocarbamoyla mino)indeno[1,2-c]pyrazol-4-one;
[0355] 3-(4-(4-pyrrolidinopiperidino)phenyl)-5-(morpholinocarbamoyl amino)indeno[1,2-c]pyrazol-4-one;
[0356] 3-(4-(4-(N,N-diethylamino)piperidino)phenyl)-5-(morpholinoca rbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0357] 3-(4-methoxyphenyl)-5-((4-methylpiperazino)-thionocarbamoyla mino)indeno[1,2-c]pyrazol-4-one;
[0358] 3-(1-methyl-3-pyrrolyl)-5-(carbamoylamino)indeno[1,2-c]pyraz ol-4-one;
[0359] 3-(5-pyrrolidinoaminocarbonyl-2-thienyl)-5-(morpholinocarbam oylamino)indeno[1,2-c]pyrazol-4-one;
[0360] 3-(5-piperidinoaminocarbonyl-2-thienyl)-5-(morpholinocarbamo ylamino)indeno[1,2-c]pyrazol-4-one;
[0361] 3-(5-piperidinocarbonyl-2-thienyl)-5-(morpholinocarbamoylami no)indeno[1,2-c]pyrazol-4-one;
[0362] 3-(5-piperazinocarbonyl-2-thienyl)-5-(morpholinocarbamoylami no)indeno[1,2-c]pyrazol-4-one;
[0363] 3-(5-(4-methylpiperazinocarbonyl)-2-thienyl)-5-(morpholinoca rbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0364] 3-(5-(4-ethylpiperazinocarbonyl)-2-thienyl)-5-(morpholinocar bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0365] 3-(5-(4-(2-hydroxyethyl)piperazinocarbonyl)-2-thienyl)-5-(mo rpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0366] 3-(5-(4-(cyclopropylmethyl)piperazinocarbonyl)-2-thienyl)-5- (morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0367] 3-(5-(4-(t-butoxycarbonyl)piperazinocarbonyl)-2-thienyl)-5-( morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0368] 3-(5-(4-(2-pyridyl)piperazinocarbonyl)-2-thienyl)-5-(morphol inocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0369] 3-(5-(((1S,4S)-(+)-2,5-diazabicyclo[2.2.1]heptyl)carbonyl)-2 -thienyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4 -one;
[0370] 3-(5-(((1S,4S)-(+)-2-methyl-2,5-diazabicyclo[2.2.1]heptyl)ca rbonyl)-2-thienyl)-5-(morpholinocarbamoylamino)indeno[1,2-c] pyrazol-4-one;
[0371] 3-(5-(4-(N,N-dimethylamino)piperidinocarbonyl)-2-thienyl)-5- (morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0372] 3-(5-(4-pyrrolidinopiperidinocarbonyl)-2-thienyl)-5-(morphol inocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0373] 3-(5-(4-piperidinopiperidinocarbonyl)-2-thienyl)-5-(morpholi nocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0374] 3-(5-cyclohexylaminocarbonyl-2-thienyl)-5-(morpholinocarbamo ylamino)indeno[1,2-c]pyrazol-4-one;
[0375] 3-(5-(4-piperidylaminocarbonyl)-2-thienyl)-5-(morpholinocarb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0376] 3-(5-((1-(t-butoxycarboxyl)piperidin-4-yl)aminocarbonyl)-2-t hienyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-o ne;
[0377] 3-(5-(4-(1-methylpiperidin-4-yl)methylaminocarbonyl)-2-thien yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0378] 3-(5-(3-(N,N-dimethylamino)piperidinocarbonyl)-2-thienyl)-5- (morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0379] 3-(5-(3-p-toluenesulfonylamino)piperidinocarbonyl-2-thienyl) -5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0380] 3-(5-(3-hydroxypiperidinocarbonyl)-2-thienyl)-5-(morpholinoc arbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0381] 3-(5-((3-piperidyl)aminocarbonyl)-2-thienyl)-5-(morpholinoca rbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0382] 3-(5-((3-quinuclidyl)aminocarbonyl)-2-thienyl)-5-(morpholino carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0383] 3-(5-((3-aminocyclohexyl)aminocarbonyl)-2-thienyl)-5-(morpho linocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0384] 3-(5-((3-(t-butoxycarbonylamino)cyclohexyl)aminocarbonyl)-2- thienyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4- one;
[0385] 3-(5-(2-(N,N-dimethylaminomethyl)piperidinocarbonyl)-2-thien yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0386] 3-(5-(2-(N,N-diethylaminomethyl)piperidinocarbonyl)-2--thien yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0387] 3-(5-pyrrolidinocarbonyl-2-thienyl)-5-(morpholinocarbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0388] 3-(5-(3-aminopyrrolidinocarbonyl)-2-thienyl)-5-(morpholinoca rbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0389] 3-(5-(3(S)-N-methylamino)pyrrolidinocarbonyl-2-thienyl)-5-(m orpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0390] 3-(5-(3(S)-acetamidopyrrolidinocarbonyl)-2-thienyl)-5-(morph olinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0391] 3-(5-(3(S)-(N-methylacetamido)pyrrolidinocarbonyl)-2-thienyl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0392] 3-(5-(3(S)-(N-methyl-t-butoxycarbonylamino)pyrrolidinocarbon yl)-2-thienyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyra zol-4-one;
[0393] 3-(5-(3-(N,N-dimethylamino)pyrrolidinocarbonyl)-2-thienyl)-5 -(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0394] 3-(5-(3(R)-(N,N-dimethylamino)pyrrolidinocarbonyl)-2-thienyl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0395] 3-(5-(3(S)-(N,N-dimethylamino)pyrrolidinocarbonyl)-2-thienyl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0396] 3-(5-((1-methylpyrrolidin-3-yl)methylaminocarbonyl)-2-thieny l)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0397] 3-(5-(2(R)-(pyrrolidinomethyl)pyrrolidinocarbonyl)-2-thienyl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0398] 3-(5-(2(S)-(hydroxymethyl)pyrrolidinocarbonyl)-2-thienyl)-5- (morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0399] 3-(5-(2(R)-(methoxymethyl)pyrrolidinocarbonyl)-2-thienyl)-5- (morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0400] 3-(5-(2(S)-(phenylaminomethyl)pyrrolidinocarbonyl)-2-thienyl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0401] 3-(5-(2(R)-(methoxymethyl)pyrrolidinoaminocarbonyl)-2-thieny l)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0402] 3-(5-homopiperidinocarbonyl-2-thienyl)-5-(morpholinocarbamoy lamino)indeno[1,2-c]pyrazol-4-one;
[0403] 3-(5-homopiperazinocarbonyl-2-thienyl)-5-(morpholinocarbamoy lamino)indeno[1,2-c]pyrazol-4-one;
[0404] 3-(5-(4-methylhomopiperazinocarbonyl)-2-thienyl)-5-(morpholi nocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0405] 3-(5-(4-ethylhomopiperazinocarbonyl)-2-thienyl)-5-(morpholin ocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0406] 3-(5-(4-(cyclopropylmethyl)homopiperazinocarbonyl)-2-thienyl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0407] 3-(5-(4-(t-butoxycarbonyl)homopiperazinocarbonyl)-2-thienyl) -5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0408] 3-(5-(4-acetylhomopiperazinocarbonyl)-2-thienyl)-5-(morpholi nocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0409] 3-(5-((4-methylaminophenyl)aminocarbonyl)-2-thienyl)-5-(morp holinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0410] 3-(5-((4-acetamidophenyl)aminocarbonyl)-2-thienyl)-5-(morpho linocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0411] 3-(5-(4-(diethylamino)phenylaminocarbonyl)-2-thienyl)-5-(mor pholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0412] 3-(5-((1-methyl-3-cyclopropylpyrazo-5-yl)aminocarbonyl)-2-th ienyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-on e;
[0413] 3-(1-methyl-3-pyrrolyl)-5-(morpholinocarbamoylamino)indeno[1 ,2-c]pyrazol-4-one;
[0414] 3-(5-carboethoxy-2-thienyl)-5-(2(R)-(methoxymethyl)pyrrolidi nocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0415] 3-(5-carboxyl-2-thienyl)-5-(2(R)-(methoxymethyl)pyrrolidinoc arbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0416] 3-(5-(4-methylpiperazinocarbonyl)-2-thienyl)-5-(2(R)-(methox ymethyl)pyrrolidinocarbamoylamino)indeno[1,2-c]pyrazol-4-one ;
[0417] 3-(5-piperazinocarbonyl-2-thienyl)-5-(2(R)-(methoxymethyl)py rrolidinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0418] 3-(5-(4-(t-butoxycarbonyl)piperazinocarbonyl)-2-thienyl)-5-( 2(R)-(methoxymethyl)pyrrolidinocarbamoylamino)indeno[1,2-c]p yrazol-4-one;
[0419] 3-(5-(4-methylhomopiperazinocarbonyl)-2-thienyl)-5-(2(R)-(me thoxymethyl)pyrrolidinocarbamoylamino)indeno[1,2-c]pyrazol-4 -one;
[0420] 3-(5-homopiperazinocarbonyl-2-thienyl)-5-(2(R)-(methoxymethy l)pyrrolidinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0421] 3-(5-(4-(t-butoxycarbonyl)homopiperazinocarbonyl)-2-thienyl) -5-(2(R)-(methoxymethyl)pyrrolidinocarbamoylamino)indeno[1,2 -c]pyrazol-4-one;
[0422] 3-(c-propyl)-5-(4-carbamoylpiperidinoacetamido)indeno[1,2-c] pyrazol-4-one;
[0423] 3-ethyl-5-(4-methylpiperazinocarbamoylamino)indeno[1,2-c]pyr azol-4-one;
[0424] 3-(c-propyl)-5-(4-methylpiperazinocarbamoylamino)indeno[1,2- c]pyrazol-4-one;
[0425] 3-(c-hexyl)-5-(4-methylpiperazinocarbamoylamino)indeno[1,2-c ]pyrazol-4-one;
[0426] 3-ethyl-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-o ne;
[0427] 3-(c-propyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazo l-4-one;
[0428] 3-(c-hexyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol -4-one;
[0429] 3-(1-ethoxycarbonylpiperidin-4-yl)-5-(morpholinocarbamoylami no)indeno[1,2-c]pyrazol-4-one;
[0430] 3-(1-phenoxycarbonylpiperidin-4-yl)-5-(morpholinocarbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0431] 3-(1-(imidazol-1-ylcarbonyl)piperidin-4-yl)-5-(morpholinocar bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0432] 3-(1-(2-thienylcarbonyl)piperidin-4-yl)-5-(morpholinocarbamo ylamino)indeno[1,2-c]pyrazol-4-one;
[0433] 3-(1-carbamoylpiperidin-4-yl)-5-(morpholinocarbamoylamino)in deno[1,2-c]pyrazol-4-one;
[0434] 3-(1-(ethylcarbamoyl)piperidin-4-yl)-5-(morpholinocarbamoyla mino)indeno[1,2-c]pyrazol-4-one;
[0435] 3-(1-(2-(1-methylpyrrolidin-2-yl)ethylaminocarbamoyl)piperid in-4-yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4- one;
[0436] 3-(1-(4-(dimethylamino)piperidinocarbonyl)piperidin-4-yl)-5- (morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0437] 3-(1-(piperazinocarbonyl)piperidin-4-yl)-5-(morpholinocarbam oylamino)indeno[1,2-c]pyrazol-4-one;
[0438] 3-(1-(4-(t-butoxycarbonyl)piperazinocarbonyl)piperidin-4-yl) -5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0439] 3-(1-(((lS,4S)-(+)-2,5-diazabicyclo[2.2.1]hept-2-yl)carbonyl )piperidin-4-yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]py razol-4-one;
[0440] 3-(1-(((IS,4S)-(+)-5-methyl-2,5-diazabicyclo[2.2.1]hept-2-yl )carbonyl)piperidin-4-yl)-5-(morpholinocarbamoylamino)indeno [1,2-c]pyrazol-4-one;
[0441] 3-(1-(3-aminopropylcarbonyl)piperidin-4-yl)-5-(morpholinocar bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0442] 3-(1-(3-(dimethylamino)propylcarbonyl)piperidin-4-yl)-5-(mor pholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0443] 3-(1-(3-(t-butoxycarbonylamino)propylcarbonyl)piperidin-4-yl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0444] 3-(1-(4-aminobutylcarbonyl)piperidin-4-yl)-5-(morpholinocarb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0445] 3-(1-(4-(dimethylamino)butylcarbonyl)piperidin-4-yl)-5-(morp holinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0446] 3-(1-(4-(t-butoxycarbonylamino)butylcarbonyl)piperidin-4-yl) -5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0447] 3-(1-((1-methylpiperidin-4-yl)carbonyl)piperidin-
[0448] 3-(1-((1-(t-butoxycarbonyl)piperidin-
[0449] 3-(1-(cis-4-aminocyclohexylcarbonyl)piperidin-
[0450] 3-(1-(4-aminocyclohexylcarbonyl)piperidin-
[0451] 3-(1-(cis-4-(dimethylamino)cyclohexylcarbonyl)piperidin-
[0452] 3-(1-(4-(t-butoxycarbonylamino)cyclohexylcarbonyl)piperidin- 4-yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one ;
[0453] 3-(1-(trans-4-(t-butoxycarbonylamino)cyclohexylcarbonyl)pipe ridin-4-yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol -4-one;
[0454] 3-(1-(piperidin-3-ylcarbonyl)piperidin-
[0455] 3-(1-(1-methylpiperidin-3-ylcarbonyl)piperidin-
[0456] 3-(1-(1-(t-butoxycarbonyl)piperidin-3-ylcarbonyl)piperidin-4 -yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0457] 3-(1-(3-aminocyclohexylcarbonyl)piperidin-
[0458] 3-(1-(3-(dimethylamino)cyclohexylcarbonyl)piperidin-4-yl)-5- (morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0459] 3-(1-(trans-4-methoxycyclohexylcarbonyl)piperidin-
[0460] 3-(1-(cis-4-methoxycyclohexylcarbonyl)piperidin-
[0461] 3-(1-(4-aminobenzylcarbonyl)piperidin-4-yl)-5-(morpholinocar bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0462] 3-(1-(4-(dimethylamino)benzylcarbonyl)piperidin-4-yl)-5-(mor pholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0463] 3-(1-(4-(t-butoxycarbonylamino)benzylcarbonyl)piperidin-4-yl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0464] 3-(1-(4-aminophenylcarbonyl)piperidin-4-yl)-5-(morpholinocar bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0465] 3-(1-(4-(dimethylamino)phenylcarbonyl)piperidin-4-yl)-5-(mor pholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0466] 3-(1-(4-(t-butoxycarbonylamino)phenylcarbonyl)piperidin-4-yl )-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0467] 3-(trans-4-carboxylcyclohexyl)-5-(morpholinocarbamoylamino)i ndeno[1,2-c]pyrazol-4-one;
[0468] 3-(trans-4-(methoxycarbonyl)cyclohexyl)-5-(morpholinocarbamo ylamino)indeno[1,2-c]pyrazol-4-one;
[0469] 3-(trans-4-(3-(dimethylamino)pyrrolidinocarbonyl)cyclohexyl) -5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0470] 3-(trans-4-(piperazinocarbonyl)cyclohexyl)-5-(morpholinocarb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0471] 3-(trans-4-(4-methylpiperazinocarbonyl)cyclohexyl)-5-(morpho linocarbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0472] 3-(trans-4-(homopiperazinocarbonyl)cyclohexyl)-5-(morpholino carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0473] 3-(trans-4-(4-methylhomopiperazinocarbonyl)cyclohexyl)-5-(mo rpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one; or pharmaceutically acceptable salt form thereof.
[0474] [37] In another embodiment, the invention describes novel compounds of embodiment [1], selected from:
[0475] 3-(4-piperazinophenyl)-5-(morpholinocarbamoylamino)-indeno[1 ,2-c]pyrazol-4-one;
[0476] 3-(4-(4-methylpiperazino)phenyl)-5-(morpholinocarbamoylamino )indeno[1,2-c]pyrazol-4-one;
[0477] 3-(4-(4-ethylpiperazino)phenyl)-5-(morpholinocarbamoylamino) indeno[1,2-c]pyrazol-4-one;
[0478] 3-(4-(4-isopropylpiperazino)phenyl)-5-(morpholinocarbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0479] 3-(4-piperazinophenyl)-5-((N,N-dimethylamino)carbamoylamino) -indeno[1,2-c]pyrazol-4-one;
[0480] 3-(4-(4-methylpiperazino)phenyl)-5-((N,N-dimethylamino)-carb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0481] 3-(4-piperazinophenyl)-5-((4-methylpiperazino)carbamoylamino )-indeno[1,2-c]pyrazol-4-one;
[0482] 3-(4-(4-methylpiperazino)phenyl)-5-((4-methylpiperazino)-car bamoylamino)indeno[1,2-c]pyrazol-4-one;
[0483] 3-(4-(4-ethylpiperazino)phenyl)-5-((4-methylpiperazino)-carb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0484] 3-(4-(4-isopropylpiperazino)phenyl)-5-((4-methylpiperazino)- carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0485] 3-(4-piperazinophenyl)-5-((2(R)-(methoxymethyl)pyrrolidino)- carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0486] 3-(4-piperazinophenyl)-5-((2(R)-(1-methoxy-1-methylethyl)-py rrolidino)carbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0487] 3-(4-homopiperazinophenyl)-5-(morpholinocarbamoylamino)inden o[1,2-c]pyrazol-4-one;
[0488] 3-(4-(4-methylhomopiperazino)phenyl)-5-(morpholinocarbamoyla mino)indeno[1,2-c]pyrazol-4-one;
[0489] 3-(4-(4-ethylhomopiperazino)phenyl)-5-(morpholinocarbamoylam ino)indeno[1,2-c]pyrazol-4-one;
[0490] 3-(4-(4-isopropylhomopiperazino)phenyl)-5-(morpholinocarbamo ylamino)indeno[1,2-c]pyrazol-4-one;
[0491] 3-(4-(4-(N,N-dimethylamino)piperidino)phenyl)-5-(morpholinoc arbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0492] 3-(4-(4-(N,N-diethylamino)piperidino)phenyl)-5-(morpholinoca rbamoylamino)indeno[1,2-c]pyrazol-4-one;
[0493] 3-(4-(4-piperidinopiperidino)phenyl)-5-(morpholinocarbamoyla mino)indeno[1,2-c]pyrazol-4-one;
[0494] 3-(4-(4-pyrrolidinopiperidino)phenyl)-5-(morpholinocarbamoyl amino)indeno[1,2-c]pyrazol-4-one;
[0495] 3-(2,4-dimethylthiazol-5-yl)-5-(carbamoylamino)indeno[1,2-c] pyrazol-4-one;
[0496] 3-(2,4-dimethylthiazol-5-yl)-5-(morpholinocarbamoylamino)ind eno[1,2-c]pyrazol-4-one;
[0497] 3-(2,4-dimethylthiazol-5-yl)-5-((1-methyl-1-phenylamino)carb amoylamino)indeno[1,2-c]pyrazol-4-one;
[0498] 3-(2,4-dimethylthiazol-5-yl)-5-((2,6-dimethylpiperidino)carb amoylamino)indeno[1,2-c]pyrazol-4-one; and
[0499] 3-(2,4-dimethylthiazol-5-yl)-5-((4-methylpiperazino)carbamoy lamino)indeno[1,2-c]pyrazol-4-one; or pharmaceutically acceptable salt form thereof.
[0500] [38] In another embodiment, the invention describes a pharmaceutical composition, comprising a pharmaceutically acceptable carrier, a compound according to embodiment [1] or a pharmaceutically acceptable salt or prodrug form thereof, and a cytostatic or cytotoxic agent.
[0501] [39] In another embodiment, the invention describes a method of treating a cell proliferative disease associated with CDK activity in a patient in need thereof,comprising administrering to said patient a pharmaceutically effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof, wherein the proliferative diseases is selected from the group consisting of: Alzheimer's disease, viral infections, auto-immune diseases, fungal disease, cancer, psoriasis, vascular smooth cell proliferation associated with atherosclerosis, pulmonary fibrosis, arthritis glomerulonephritis, neurodegenerative disorders and post-surgical stenosis and restenosis.
[0502] [40] In another embodiment, the invention describes a method of treating cancer associated with CDK activity in a patient in need thereof,comprising administrering to said patient a pharmaceutically effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof, wherein the cancer is selected from the group consisting of: carcinoma such as bladder, breast, colon, kidney, liver, lung, including small cell lung cancer, esophagus, gall-bladder, ovary, pancreas, stomach, cervix, thyroid, prostate, and skin, including squamous cell carcinoma; hematopoietic tumors of lymphoid lineage, including leukemia, acute lymphocytic leukemia, acute lymphoblastic leukemia, B-cell lymphoma, T-cell-lymphoma, Hodgkin's lymphoma, non-Hodgkin's lymphoma, hairy cell lymphoma and Burkett's lymphoma; hematopoietic tumors of myeloid lineage, including acute and chronic myelogenous leukemias, myelodysplastic syndrome and promyelocytic leukemia; tumors of mesenchymal origin, including fibrosarcoma and rhabdomyosarcoma; tumors of the central and peripheral nervous system, including astrocytoma, neuroblastoma, glioma and schwannomas; other tumors, including melanoma, seminoma, teratocarcinoma, osteosarcoma, xenoderoma pigmentosum, keratoctanthoma, thyroid follicular cancer and Kaposi's sarcoma.
[0503] [41] In another embodiment, the invention describes a method of treating a disease associated with apoptosis in a patient in need thereof, comprising administrering to said patient a pharmaceutically effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof, wherein the disease associated with apoptosis is selected from the group consisting of: cancer, viral infections, autoimmune diseases and neurodegenerative disorder.
[0504] [42] In another embodiment, the invention describes a method of inhibiting tumor angiogenesis and metastasis in a patient in need thereof, comprising administrering to said patient a pharmaceutically effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0505] [43] In another embodiment, the invention describes a method of modulating the level of cellular RNA and DNA synthesis in a patient in need thereof, comprising administering to said patient a CDK inhibitory effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0506] [44] In another embodiment, the invention describes a method of treating viral infections in a patient in need thereof, comprising administering to said patient a CDK inhibitory effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof, wherein the viral infections is selected from the group consiting of HIV, human papilloma virus, herpesvirus, poxyirus, Epstein-Barr virus, Sindbis virus and adenovirus.
[0507] [45] In another embodiment, the invention describes a method of chemopreventing cancer in a patient, comprising administering to said patient in need thereof, a CDK inhibitory effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0508] [46] In another embodiment, the invention describes a method of inhibiting CDK activity comprising combining an effective amount of a compound according to embodiment [1], with a composition containing CDK.
[0509] [47] In another embodiment, the invention describes a method of treating cancer associated with CDK activity in a patient in need thereof,comprising administrering to said patient a pharmaceutically effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof, in combination (administered together or sequentially) with known anti-cancer treatments such as radiation therapy or with cytostatic or cytotoxic agents, wherein such agents are selected from the group consisting of: DNA interactive agents, such as cisplatin or doxorubicin; topoisomerase II inhibitors, such as etoposide; topoisomerase I inhibitors such as CPT-11 or topotecan; tubulin interacting agents, such as paclitaxel, docetaxel or the epothilones; hormonal agents, such as tamoxifen; thymidilate synthase inhibitors, such as 5-fluorouracil; and anti-metabolites, such as methoxtrexate.
[0510] [48] In another embodiment, the invention describes a method treating cell proliferative diseases associated with CDK activity in a patient in need thereof, comprising administrering to said patient a pharmaceutically effective amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof, in combination (administered together or sequentially) with known anti-proliferating agents selected from the group consisting of:, altretamine, busulfan, chlorambucil, cyclophosphamide, ifosfamide, mechlorethamine, melphalan, thiotepa, cladribine, fluorouracil, floxuridine, gemcitabine, thioguanine, pentostatin, methotrexate, 6-mercaptopurine, cytarabine, carmustine, lomustine, streptozotocin, carboplatin, cisplatin, oxaliplatin, iproplatin, tetraplatin, lobaplatin, JM216, JM335, fludarabine, aminoglutethimide, flutamide, goserelin, leuprolide, megestrol acetate, cyproterone acetate, tamoxifen, anastrozole, bicalutamide, dexamethasone, diethylstilbestrol, prednisone, bleomycin, dactinomycin, daunorubicin, doxirubicin, idarubicin, mitoxantrone, losoxantrone, mitomycin-c, plicamycin, paclitaxel, docetaxel, CPT-11, epothilones , topotecan, irinotecan, 9-amino camptothecan, 9-nitro camptothecan, GS-211, etoposide, teniposide, vinblastine, vincristine, vinorelbine, procarbazine, asparaginase, pegaspargase, methoxtrexate, octreotide, estramustine, and hydroxyurea.
[0511] [49] In another embodiment, the invention describes a method of inhibiting CDK1 activity, comprising adminsitering to a patient in need thereof an efective CDKl inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0512] [50] In another embodiment, the invention describes a method of inhibiting CDK2 activity, comprising adminsitering to a patient in need thereof an efective CDK2 inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0513] [51] In another embodiment, the invention describes a method of inhibiting CDK3 activity, comprising adminsitering to a patient in need thereof an efective CDK3 inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0514] [52] In another embodiment, the invention describes a method of inhibiting CDK4 activity, comprising adminsitering to a patient in need thereof an efective CDK4 inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0515] [53] In another embodiment, the invention describes a method of inhibiting CDK5 activity, comprising adminsitering to a patient in need thereof an efective CDK5 inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0516] [54] In another embodiment, the invention describes a method of inhibiting CDK6 activity, comprising adminsitering to a patient in need thereof an efective CDK6 inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0517] [55] In another embodiment, the invention describes a method of inhibiting CDK7 activity, comprising adminsitering to a patient in need thereof an efective CDK7 inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0518] [56] In another embodiment, the invention describes a method of inhibiting CDK8 activity, comprising adminsitering to a patient in need thereof, an efective CDK8 inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0519] [57] In another embodiment, the invention describes a method of inhibiting CDK9 activity, comprising adminsitering to a patient in need thereof an efective CDK9 inhibitory amount of a compound according to embodiment [1], or a pharmaceutically acceptable salt or prodrug form thereof.
[0520] [58] In another embodiment, the invention describes a pharmaceutical kit for treating a cell proliferative disease associated with CDK activity, said kit comprising a plurality of separate containers, wherein at least one of said containers contains a compound accordig to embodiment [1],, or a pharmaceutically acceptable salt or prodrug form thereof, and at least another of said containers contains one or more compounds selected from the group consisting of cytostatic or cytotoxic agents, such as for example, but not limited to, DNA interactive agents, such as carboplatin, cisplatin or doxorubicin; topoisomerase II inhibitors, such as etoposide; topoisomerase I inhibitors such as CPT-11 or topotecan; tubulin interacting agents, such as paclitaxel, taxane, docetaxel or the epothilones; hormonal agents, such as tamoxifen; thymidilate synthase inhibitors, such as 5-fluorouracil; and anti-metabolites, such as methoxtrexate, and said containers optionally contain a pharmaceutical carrier, which kit may be effectively utilized for carrying out combination therapies according to the invention.
[0521] It is a further object of the invention to provide a method of treating a patient having a disorder associated with excessive cell proliferation, comprising administering to the patient a therapeutically effective amount of a compound of embodiment [1], such that the excessive cell proliferation in the patient is reduced.
[0522] It is appreciated that certain feactures of the invention, which are, for clarity, described in the context of separate embodiments, may also be provided in combination in a single embodiment. For example, R
[0523] As used above, and throughout the description of the invention, the following terms, unless otherwise indicated, shall be understood to have the following meanings:
[0524] As used herein, the following terms and expressions have the indicated meanings.
[0525] The term “compounds of the invention”, and equivalent expressions, are meant to embrace compounds of the invention as herein before described i.e. compounds of formula (I), which expression includes the prodrugs, the pharmaceutically acceptable salts, and the solvates, e.g. hydrates, where the context so permits. Similarly, reference to intermediates, whether or not they themselves are claimed, is meant to embrace their salts, and solvates, where the context so permits. For the sake of clarity, particular instances when the context so permits are sometimes indicated in the text, but these instances are purely illustrative and it is not intended to exclude other instances when the context so permits.
[0526] The term “derivative” means a chemically modified compound wherein the modification is considered routine by the ordinary skilled chemist, such as an ester or an amide of an acid, protecting groups, such as a benzyl group for an alcohol or thiol, and tert-butoxycarbonyl group for an amine.
[0527] The term “effective amount” means an amount of a compound/composition according to the present invention effective in producing the desired therapeutic effect.
[0528] The term “amine protecting group” means an easily removable group which is known in the art to protect an amino group against undesirable reaction during synthetic procedures and to be selectively removable. The use of amine protecting groups is well known in the art for protecting groups against undesirable reactions during a synthetic procedure and many such protecting groups are known, for example, T. H. Greene and P. G. M. Wuts, Protective Groups in Organic Synthesis, 2nd edition, John Wiley & Sons, New York (1991), incorporated herein by reference. Preferred amine protecting groups are acyl, including formyl, acetyl, chloroacetyl, trichloroacetyl, o-nitrophenylacetyl, o-nitrophenoxyacetyl, trifluoroacetyl, acetoacetyl, 4-chlorobutyryl, isobutyryl, o-nitrocinnamoyl, picolinoyl, acylisothiocyanate, aminocaproyl, benzoyl and the like, and acyloxy including methoxycarbonyl, 9-fluorenylmethoxycarbonyl, 2,2,2-trifluoroethoxycarbonyl, 2-trimethylsilylethxoycarbonyl, vinyloxycarbonyl, allyloxycarbonyl, t-butyloxycarbonyl (BOC), 1,1-dimethylpropynyloxycarbonyl, benzyloxycarbonyl (CBZ), p-nitrobenzyloxycarbony, 2,4-dichlorobenzyloxycarbonyl, and the like.
[0529] The term “acid labile amine protecting group” means an amine protecting group as defined above which is readily removed by treatment with acid while remaining relatively stable to other reagents. A preferred acid labile amine protecting group is tert-butoxycarbonyl (BOC).
[0530] The term “hydrogenation labile amine protecting group” means an amine protecting group as defined above which is readily removed by hydrogenation while remaining relatively stable to other reagents. A preferred hydrogenation labile amine protecting group is benzyloxycarbonyl (CBZ).
[0531] The term “hydrogenation labile acid protecting group” means an acid protecting group as defined above which is readily removed by hydrogenation while remaining relatively stable to other reagents. A preferred hydrogenation labile acid protecting group is benzyl.
[0532] The term “analogue” means a compound which comprises a chemically modified form of a specific compound or class thereof, and which maintains the pharmaceutical and/or pharmacological activities characteristic of said compound or class.
[0533] The term “patient” includes both human and other mammals.
[0534] The term “pharmaceutical composition” means a composition comprising a compound of formula (I) and at least one component selected from the group comprising pharmaceutically acceptable carriers, diluents, adjuvants, excipients, or vehicles, such as preserving agents, fillers, disintegrating agents, wetting agents, emulsifying agents, suspending agents, sweetening agents, flavoring agents, perfuming agents, antibacterial agents, antifungal agents, lubricating agents and dispensing agents, depending on the nature of the mode of administration and dosage forms. Examples of suspending agents include ethoxylated isostearyl alcohols, polyoxyethylene sorbitol and sorbitan esters, microcrystalline cellulose, aluminum metahydroxide, bentonite, agar-agar and tragacanth, or mixtures of these substances. Prevention of the action of microorganisms can be ensured by various antibacterial and antifungal agents, for example, parabens, chlorobutanol, phenol, sorbic acid, and the like. It may also be desirable to include isotonic agents, for example sugars, sodium chloride and the like. Prolonged absorption of the injectable pharmaceutical form can be brought about by the use of agents delaying absorption, for example, aluminum monosterate and gelatin. Examples of suitable carriers, diluents, solvents or vehicles include water, ethanol, polyols, suitable mixtures thereof, vegetable oils (such as olive oil) and injectable organic esters such as ethyl oleate. Examples of excipients include lactose, milk sugar, sodium citrate, calcium carbonate, dicalcium phosphate phosphate. Examples of disintegrating agents include starch, alginic acids and certain complex silicates. Examples of lubricants include magnesium stearate, sodium lauryl sulphate, talc, as well as high molecular weight polyethylene glycols.
[0535] The term “solvate” means a physical association of a compound of this invention with one or more solvent molecules. This physical association includes hydrogen bonding. In certain instances the solvate will be capable of isolation, for example when one or more solvent molecules are incorporated in the crystal lattice of the crystalline solid. “Solvate” encompasses both solution-phase and isolable solvates. Exemplary solvates include hydrates, ethanolates, methanolates, and the like.
[0536] The term “alkyl” is intended to include both branched and straight-chain saturated aliphatic hydrocarbon groups having the specified number of carbon atoms. Examples of alkyl include, but are not limited to, methyl, ethyl, n-propyl, i-propyl, n-butyl, s-butyl, t-butyl, n-pentyl, and s-pentyl. In addition, the term is intended to include both unsubstituted and substituted alkyl groups, the latter referring to alkyl moieties having one or more hydrogen substituents replaced by, but not limited to halogen, hydroxyl, carbonyl, alkoxy, ester, ether, cyano, phosphoryl, amino, imino, amido, sulfhydryl, alkythio, thioester, sulfonyl, nitro, heterocyclo, aryl or heteroaryl. It will also be understood by those skilled in the art that the substituted moieties themselves can be substituted as well when appropriate.
[0537] The terms “halo” or “halogen” as used herein refer to fluoro, chloro, bromo and iodo. The term “aryl” is intended to mean an aromatic moiety containing the specified number of carbon atoms, such as, but not limited to phenyl, indanyl or naphthyl. The terms “cycloalkyl” and “bicycloalkyl” are intended to mean any stable ring system, which may be saturated or partially unsaturated. Examples of such include, but are not limited to, cyclopropyl, cyclopentyl, cyclohexyl, norbornyl, bicyclo[2.2.2]nonane, adamantly, or tetrahydronaphthyl (tetralin).
[0538] As used herein, “carbocycle” or “carbocyclic residue” is intended to mean any stable 3- to 7-membered monocyclic or bicyclic or 7- to 13-membered bicyclic or tricyclic, any of which may be saturated, partially unsaturated, or aromatic. Examples of such carbocycles include, but are not limited to, cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl, adamantyl, cyclooctyl,; [3.3.0]bicyclooctane, [4.3.0]bicyclononane, [4.4.0]bicyclodecane (decalin), [2.2.2]bicyclooctane, fluorenyl, phenyl, naphthyl, indanyl, adamantyl, or tetrahydronaphthyl (tetralin).
[0539] As used herein, the term “heterocycle” or “heterocyclic system” is intended to mean a stable 5- to 7- membered monocyclic or bicyclic or 7- to 10-membered bicyclic heterocyclic ring which is saturated partially unsaturated or unsaturated (aromatic), and which consists of carbon atoms and from 1 to 4 heteroatoms independently selected from the group consisting of N, O and S and including any bicyclic group in which any of the above-defined heterocyclic rings is fused to a benzene ring. The nitrogen and sulfur heteroatoms may optionally be oxidized. The heterocyclic ring may be attached to its pendant group at any heteroatom or carbon atom which results in a stable structure. The heterocyclic rings described herein may be substituted on carbon or on a nitrogen atom if the resulting compound is stable. If specifically noted, a nitrogen in the heterocycle may optionally be quaternized. It is preferred that when the total number of S and O atoms in the heterocycle exceeds 1, then these heteroatoms are not adjacent to one another. It is preferred that the total number of S and O atoms in the heterocycle is not more than 1. As used herein, the term “aromatic heterocyclic system” is intended to mean a stable 5- to 7- membered monocyclic or bicyclic or 7- to 10-membered bicyclic heterocyclic aromatic ring which consists of carbon atoms and from 1 to 4 heterotams independently selected from the group consisting of N, O and S. It is preferred that the total number of S and O atoms in the aromatic heterocycle is not more than 1.
[0540] Examples of heterocycles include, but are not limited to, 1H-indazole, 2-pyrrolidonyl, 2H,6H-1,5,2-dithiazinyl, 2H-pyrrolyl, 3H-indolyl, 4-piperidonyl, 4aH-carbazole, 4H-quinolizinyl, 6H-1,2,5-thiadiazinyl, acridinyl, azocinyl, benzimidazolyl, benzofuranyl, benzothiofuranyl, benzothiophenyl, benzoxazolyl, benzthiazolyl, benztriazolyl, benztetrazolyl, benzisoxazolyl, benzisothiazolyl, benzimidazalonyl, carbazolyl, 4aH-carbazolyl, b-carbolinyl, chromanyl, chromenyl, cinnolinyl, decahydroquinolinyl, 2H,6H-1,5,2-dithiazinyl, dihydrofuro[2,3-b]tetrahydrofuran, furanyl, furazanyl, imidazolidinyl, imidazolinyl, imidazolyl, 1H-indazolyl, indolenyl, indolinyl, indolizinyl, indolyl, isobenzofuranyl, isochromanyl, isoindazolyl, isoindolinyl, isoindolyl, isoquinolinyl, isothiazolyl, isoxazolyl, morpholinyl, naphthyridinyl, octahydroisoquinolinyl, oxadiazolyl, 1,2,3-oxadiazolyl, 1,2,4-oxadiazolyl, 1,2,5-oxadiazolyl, 1,3,4-oxadiazolyl, oxazolidinyl., oxazolyl, oxazolidinylperimidinyl, phenanthridinyl, phenanthrolinyl, phenarsazinyl, phenazinyl, phenothiazinyl, phenoxathiinyl, phenoxazinyl, phthalazinyl, piperazinyl, piperidinyl, pteridinyl, piperidonyl, 4-piperidonyl, pteridinyl, purinyl, pyranyl, pyrazinyl, pyrazolidinyl, pyrazolinyl, pyrazolyl, pyridazinyl, pyridooxazole, pyridoimidazole, pyridothiazole, pyridinyl, pyridyl, pyrimidinyl, pyrrolidinyl, pyrrolinyl, pyrrolyl, quinazolinyl, quinolinyl, 4H-quinolizinyl, quinoxalinyl, quinuclidinyl, carbolinyl, tetrahydrofuranyl, tetrahydroisoquinolinyl, tetrahydroquinolinyl, 6H-1,2,5-thiadiazinyl, 1,2,3-thiadiazolyl, 1,2,4-thiadiazolyl, 1,2,5-thiadiazolyl, 1,3,4-thiadiazolyl, thianthrenyl, thiazolyl, thienyl, thienothiazolyl, thienooxazolyl, thienoimidazolyl, thiophenyl, triazinyl, 1,2,3-triazolyl, 1,2,4-triazolyl, 1,2,5-triazolyl, 1,3,4-triazolyl, xanthenyl. Preferred heterocycles include, but are not limited to, pyridinyl, furanyl, thienyl, pyrrolyl, pyrazolyl, imidazolyl, indolyl, benzimidazolyl, 1H-indazolyl, oxazolidinyl, benzotriazolyl, benzisoxazolyl, oxindolyl, benzoxazolinyl, or isatinoyl. Also included are fused ring and spiro compounds containing, for example, the above heterocycles.
[0541] As used herein, “pharmaceutically acceptable salts” refer to derivatives of the disclosed compounds wherein the parent compound is modified by making acid or base salts thereof. Examples of pharmaceutically acceptable salts include, but are not limited to, mineral or organic acid salts of basic residues such as amines; alkali or organic salts of acidic residues such as carboxylic acids; and the like. The pharmaceutically acceptable salts include the conventional non-toxic salts or the quaternary ammonium salts of the parent compound formed, for example, from non-toxic inorganic or organic acids. For example, such conventional non-toxic salts include those derived from inorganic acids such as hydrochloric, hydrobromic, sulfuric, sulfamic, phosphoric, nitric and the like; and the salts prepared from organic acids such as acetic, propionic, succinic, glycolic, stearic, lactic, malic, tartaric, citric, ascorbic, pamoic, maleic, hydroxymaleic, phenylacetic, glutamic, benzoic, salicylic, sulfanilic, 2-acetoxybenzoic, fumaric, toluenesulfonic, methanesulfonic, ethane disulfonic, oxalic, isethionic, and the like.
[0542] The pharmaceutically acceptable salts of the present invention can be synthesized from the parent compound which contains a basic or acidic moiety by conventional chemical methods. Generally, such salts can be prepared by reacting the free acid or base forms of these compounds with a stoichiometric amount of the appropriate base or acid in water or in an organic solvent, or in a mixture of the two; generally, nonaqueous media like ether, ethyl acetate, ethanol, isopropanol, or acetonitrile are preferred. Lists of suitable salts are found in Remington's Pharmaceutical Sciences, 18th ed., Mack Publishing Company, Easton, Pa., 1990, p. 1445, the disclosure of which is hereby incorporated by reference.
[0543] The phrase “pharmaceutically acceptable” is employed herein to refer to those compounds, materials, compositions, and/or dosage forms which are, within the scope of sound medical judgment, suitable for use in contact with the tissues of human beings and animals without excessive toxicity, irritation, allergic response, or other problem or complication commensurate with a reasonable benefit/risk ratio.
[0544] The term “Pharmaceutically acceptable prodrugs” as used herein means those prodrugs of the compounds useful according to the present invention which are, within the scope of sound medical judgment, suitable for use in contact with the tissues of humans and lower animals with undue toxicity, irritation, allergic response, and the like, commensurate with a reasonable benefit/risk ratio, and effective for their intended use, as well as the zwitterionic forms, where possible, of the compounds of the invention.
[0545] The term “Prodrugs”, as the term is used herein, are intended to include any covalently bonded carriers which release an active parent drug of the present invention in vivo when such prodrug is administered to a mammalian subject. Since prodrugs are known to enhance numerous desirable qualities of pharmaceuticals (i.e., solubility, bioavailability, manufacturing, etc.) the compounds of the present invention may be delivered in prodrug form. Thus, the present invention is intended to cover prodrugs of the presently claimed compounds, methods of delivering the same, and compositions containing the same. Prodrugs of the present invention are prepared by modifying functional groups present in the compound in such a way that the modifications are cleaved, either in routine manipulation or in vivo, to the parent compound. The transformation in vivo may be, for example, as the result of some metabolic process, such as chemical or enzymatic hydrolysis of a carboxylic, phosphoric or sulphate ester, or reduction or oxidation of a susceptible functionality. Prodrugs include compounds of the present invention wherein a hydroxy, amino, or sulfhydryl group is bonded to any group that, when the prodrug of the present invention is administered to a mammalian subject, it cleaves to form a free hydroxyl, free amino, or free sulfydryl group, respectively. Functional groups which may be rapidly transformed, by metabolic cleavage, in vivo form a class of groups reactive with the carboxyl group of the compounds of this invention. They include, but are not limited to such groups as alkanoyl (such as acetyl, propionyl, butyryl, and the like), unsubstituted and substituted aroyl (such as benzoyl and substituted benzoyl), alkoxycarbonyl (such as ethoxycarbonyl), trialkylsilyl (such as trimethyl- and triethysilyl), monoesters formed with dicarboxylic acids (such as succinyl), and the like. Because of the ease with which the metabolically cleavable groups of the compounds useful according to this invention are cleaved in vivo, the compounds bearing such groups act as pro-drugs. The compounds bearing the metabolically cleavable groups have the advantage that they may exhibit improved bioavailability as a result of enhanced solubility and/or rate of absorption conferred upon the parent compound by virtue of the presence of the metabolically cleavable group. A thorough discussion of prodrugs is provided in the following: Design of Prodrugs, H. Bundgaard, ed., Elsevier, 1985; Methods in Enzymology, K. Widder et al, Ed., Academic Press, 42, p.309-396, 1985; A Textbook of Drug Design and Development, Krogsgaard-Larsen and H. Bundgaard, ed., Chapter 5; “Design and Applications of Prodrugs” p.113-191, 1991; Advanced Drug Delivery Reviews, H. Bundgard, 8, p.1-38, 1992; Journal of Pharmaceutical Sciences, 77, p. 285, 1988; Chem. Pharm. Bull., N. Nakeya et al, 32, p. 692, 1984; Pro-drugs as Novel Delivery Systems, T. Higuchi and V. Stella, Vol. 14 of the A.C.S. Symposium Series, and Bioreversible Carriers in Drug Design, Edward B. Roche, ed., American Pharmaceutical Association and Pergamon Press, 1987, which are incorporated herein by reference.
[0546] “Substituted” is intended to indicate that one or more hydrogens on the atom indicated in the expression using “substituted” is replaced with a selection from the indicated group(s), provided that the indicated atom's normal valency is not exceeded, and that the substitution results in a stable compound. When a substituent is keto (i.e., ═O) group, then 2 hydrogens on the atom are replaced.
[0547] The term “Treating” refers to:
[0548] (i) preventing a disease, disorder or condition from occurring in an animal which may be predisposed to the disease, disorder and/or condition but has not yet been diagnosed as having it;
[0549] (ii) inhibiting the disease, disorder or condition, i.e., arresting its development; and
[0550] (iii) relieving the disease, disorder or condition, i.e., causing regression of the disease, disorder and/or condition.
[0551] It will be apparent to those skilled in the art that certain compounds of formula (I) can exhibit isomerism, for example geometrical isomerism, e.g., E or Z isomerism, and optical isomerism, e.g., R or S configurations. Geometrical isomers include the cis and trans forms of compounds of the invention having alkenyl moieties. It is well known in the art how to prepare optically active forms, such as by resolution of racemic forms or by synthesis from optically active starting materials. All chiral, diastereomeric, racemic forms and all geometric isomeric forms of a structure are intended, unless the specific stereochemistry or isomer form is specifically indicated.
[0552] Such isomers can be separated from their mixtures, by the application or adaptation of known methods, for example chromatographic techniques and recrystallization techniques, or they are separately prepared from the appropriate isomers of their intermediates, for example by the application or adaptation of methods described herein.
[0553] The compounds of the present invention are useful in the form of the free base or acid or in the form of a pharmaceutically acceptable salt thereof. All forms are within the scope of the invention.
[0554] Where the compound of the present invention is substituted with a basic moiety, acid addition salts are formed and are simply a more convenient form for use; and in practice, use of the salt form inherently amounts to use of the free base form. The acids which can be used to prepare the acid addition salts include preferably those which produce, when combined with the free base, pharmaceutically acceptable salts, that is, salts whose anions are non-toxic to the patient in pharmaceutical doses of the salts, so that the beneficial inhibitory effects on CDK inherent in the free base are not vitiated by side effects ascribable to the anions. Although pharmaceutically acceptable salts of said basic compounds are preferred, all acid addition salts are useful as sources of the free base form even if the particular salt, per se, is desired only as an intermediate product as, for example, when the salt is formed only for purposes of purification, and identification, or when it is used as intermediate in preparing a pharmaceutically acceptable salt by ion exchange procedures.
[0555] According to a further feature of the invention, acid addition salts of the compounds of this invention are prepared by reaction of the free base with the appropriate acid, by the application or adaptation of known methods. For example, the acid addition salts of the compounds of this invention are prepared either by dissolving the free base in aqueous or aqueous-alcohol solution or other suitable solvents containing the appropriate acid and isolating the salt by evaporating the solution, or by reacting the free base and acid in an organic solvent, in which case the salt separates directly or can be obtained by concentration of the solution.
[0556] The acid addition salts of the compounds of this invention can be regenerated from the salts by the application or adaptation of known methods. For example, parent compounds of the invention can be regenerated from their acid addition salts by treatment with an alkali, e.g. aqueous sodium bicarbonate solution or aqueous ammonia solution.
[0557] Where the compound of the invention is substituted with an acidic moiety, base addition salts may be formed and are simply a more convenient form for use; and in practice, use of the salt form inherently amounts to use of the free acid form. The bases which can be used to prepare the base addition salts include preferably those which produce, when combined with the free acid, pharmaceutically acceptable salts, that is, salts whose cations are non-toxic to the animal organism in pharmaceutical doses of the salts, so that the beneficial inhibitory effects on CDK inherent in the free acid are not vitiated by side effects ascribable to the cations. Pharmaceutically acceptable salts, including for example alkali and alkaline earth-metal salts, within the scope of the invention are those derived from the following bases: sodium hydride, sodium hydroxide, potassium hydroxide, calcium hydroxide, aluminum hydroxide, lithium hydroxide, magnesium hydroxide, zinc hydroxide, ammonia, ethylenediamine, N-methyl-glucamine, lysine, arginine, ornithine, choline, N,N′-dibenzylethylenediamine, chloroprocaine, diethanolamine, procaine, N-benzylphenethylamine, diethylamine, piperazine, tris(hydroxymethyl)-aminomethane, tetramethylammonium hydroxide, and the like.
[0558] Metal salts of compounds of the present invention may be obtained by contacting a hydride, hydroxide, carbonate or similar reactive compound of the chosen metal in an aqueous or organic solvent with the free acid form of the compound. The aqueous solvent employed may be water or it may be a mixture of water with an organic solvent, preferably an alcohol such as methanol or ethanol, a ketone such as acetone, an aliphatic ether such as tetrahydrofuran, or an ester such as ethyl acetate. Such reactions are normally conducted at ambient temperature but they may, if desired, be conducted with heating.
[0559] Amine salts of compounds of the present invention may be obtained by contacting an amine in an aqueous or organic solvent with the free acid form of the compound. Suitable aqueous solvents include water and mixtures of water with alcohols such as methanol or ethanol, ethers such as tetrahydrofuran, nitrites such as acetonitrile, or ketones such as acetone. Amino acid salts may be similarly prepared.
[0560] The base addition salts of the compounds of this invention can be regenerated from the salts by the application or adaptation of known methods. For example, parent compounds of the invention can be regenerated from their base addition salts by treatment with an acid, e.g. hydrochloric acid.
[0561] Pharmaceutically acceptable salts also include quaternary lower alkyl ammonium salts. The quaternary salts are prepared by the exhaustive alkylation of basic nitrogen atoms in compounds, including nonaromatic and aromatic basic nitrogen atoms, according to the invention, i.e., alkylating the non-bonded pair of electrons of the nitrogen moieties with an alkylating agent such as methylhalide, particularly methyl iodide, or dimethyl sulfate. Quaternarization results in the nitrogen moiety becoming positively charged and having a negative counter ion associated therewith.
[0562] As will be self-evident to those skilled in the art, some of the compounds of this invention do not form stable salts. However, acid addition salts are more likely to be formed by compounds of this invention having a nitrogen-containing heteroaryl group and/or wherein the compounds contain an amino group as a substituent. Preferable acid addition salts of the compounds of the invention are those wherein there is not an acid labile group.
[0563] As well as being useful in themselves as active compounds, salts of compounds of the invention are useful for the purposes of purification of the compounds, for example by exploitation of the solubility differences between the salts and the parent compounds, side products and/or starting materials by techniques well known to those skilled in the art.
[0564] Compounds according to the invention, for example, starting materials, intermediates or products, are prepared as described herein or by the application or adaptation of known methods, by which is meant methods used heretofore or described in the literature.
[0565] Compounds useful according to the invention may be prepared by the application or adaptation of known methods, by which is meant methods used heretofore or described in the literature, for example those described by R. C. Larock in Comprehensive Organic Transformations, VCH publishers, 1989.
[0566] In the reactions described hereinafter it may be necessary to protect reactive functional groups, for example hydroxy, amino, imino, thio or carboxy groups, where these are desired in the final product, to avoid their unwanted participation in the reactions. Conventional protecting groups may be used in accordance with standard practice, for examples see T. W. Green and P. G. M. Wuts in “Protective Groups in Organic Chemistry” John Wiley and Sons, 1991; J. F. W. McOmie in “Protective Groups in Organic Chemistry” Plenum Press, 1973.
[0567] Preferred methods of synthesizing the compounds of the invention include, but are not limited to, those methods described below. Each of the references cited below are hereby incorporated herein by reference.
[0568] An approach to preparing indeno[1,2-c]pyrazol-4-ones is presented in Scheme 1 and can be used to prepare compounds of the present invention. The nitro group of dimethyl 3-nitrophthalate was reduced to the amine using catalytic hydrogenation. The aniline was acylated using acetic anhydride and pyridine as a base. A mixture of the resulting acetamide 2 and an acetophenone were treated with a strong base in an appropriate solvent at elevated temperature to give the desired triketone 3. Additional means of preparing triketones are known to one skilled in the art as described in Kilgore et al, Industrial and Engineering Chemistry 34:494-497, 1946, the contents of which are hereby incorporated herein by reference. The triketone was treated with hydrazine at elevated temperature in an appropriate solvent to give the indeno[1,2-c]pyrazol-4-one ring system. Additional means of preparing indeno[1,2-c]pyrazol-4-ones are known to one skilled in the art as described in Lemke et al., J. Heterocyclic Chem. 19:1335-1340, 1982; Mosher and Soeder, J. Heterocyclic Chem. 8:855-59, 1971;Hrnciar and Svanygova Collect. Czech. Chem. Commun. 59:2734-40, 1994 the contents of which are hereby incorporated herein by reference. The amide was deacetylated by heating with a strong acid in an appropriate solvent to give aniline 4. This aniline was acylated under standard conditions using an acid chloride in an appropriate solvent to give the desired product 5.
[0569] An alternative method for making compounds of the present invention is shown in Scheme 2. The intermediate triketone 3 can be deacetylated with strong acid and reacylated with an appropriate acid chloride using methods known to those skilled in the art. Subsequently, triketone 6 can be converted to the indeno[1,2-c]pyrazol-4-ones using the same conditions described previously in Scheme 1.
[0570] Another method for preparing the triketones 6 of Scheme 2 employs the condensation of a 1,3-diketone 6a with 3-nitrophthalic anhydride as described in Rotberg and Qshkaya, Zh. Organ. Khim. 8:84-87, 1972; Zh. Organ. Khim. 9:2548-2550, 1973, the contents of which are hereby incorporated herein by reference. The 1,3-diketones, when not commercially available can be readily prepared by one skilled in the art by the acetylation or trifluoroacetylation of the requisite methyl ketone, R
[0571] Another method for making the indeno[1,2-c]pyrazol-4-one ring system is exemplified in Scheme 4. Dimethyl hydrazine was reacted with 3-acetylpyridine with no solvent to give the hydrazone 7. This was treated in a similar fashion as described in Scheme 1 to give the desired intermediate 8. Additional means of preparing similar intermediates are known to one skilled in the art as described in Rappoport, J. Org. Chem. 49:2948-2953, 1984, the contents of which are hereby incorporated herein by reference. This intermediate was carried through the sequence in a similar fashion as described in Scheme 1.
[0572] The ureas and semicarbazides (R
[0573] The thioureas and thiosemicarbazides (X═S) of this invention can be prepared as described above by treating the aniline intermediates with phenyl thionochloroformate, followed by exposure of the resulting phenyl thiocarbamate to the appropriate amine or hydrazine derivative. The thioamides, thioureas, and thiosemicarbazides can also be prepared from the corresponding amides, ureas, and semicarbazides by treatment with a reagent such as phosphorous pentasulfide or Lawesson's reagent.
[0574] The amidines and guanidines (X═NR) of this invention can be prepared as described in Schemes 1-4 by treatment of the intermediate anilines with a wide variety of reagents known to one skilled in the art. These reagents include, but are not limited to, imidates and iminoyl chlorides for the production of amidines and isothioures and carbodiimides for the production of guanidines. Alternatively, the amidines and guanidines of this invention can be prepared from the corresponding thioamides, thioureas, and thiosemicarbazides. For example, a thiourea can be S-alkylated by treatment with an akylating agent such as methyl iodide or methyl triflate to provide the corresponding isothiourea. Treatment of this intermediate with the requisite amine or hydrazine at elevated temperatures in an appropriate solvent then provides the desired quanidine derivative.
[0575] Many of the compounds of this invention are synthesized from the indeno[1,2-c]pyrazol-4-ones prepared in Schemes 1-4 by the further synthetic elaboration of the R
[0576] Other features of the invention will become apparent during the following descriptions of exemplary embodiments which are given for illustration of the invention and are not intended to be limiting thereof.
[0577] Abbreviations used in the Examples are defined as follows: “°C” for degrees Celsius, “CIMS” for chemical ionization mass spectroscopy, “eq” for equivalent or equivalents, “g” for gram or grams, “h” for hour or hours, “mg” for milligram or milligrams, “mL” for milliliter or milliliters, “mmol” for millimolar, “M” for molar, “min” for minute or minutes, “p-TsOH” for para-toluenesulphonic acid, “DMF” for dimethylformamide, and “TFA” for trifluoroacetic acid.
[0578]
[0579] Step 1. Synthesis of 2 from Dimethyl 3-nitrophthalate.
[0580] A solution of dimethyl 3-nitrophthalate (25 g, 105 mmol) in methanol (100 mL) was treated with 5% Pd/C (2.5 g) and hydrogenated on a Parr Shaker at 50 psi for 2 h. The solution was filtered (Celite), the filtrate collected and the solvent removed at reduced pressure. The residue was dissolved in acetic anhydride (20 mL) treated with pyridine (0.05 mL) and heated to 80° C. for 1 min. The reaction was cooled and stirred at 25° C. for 2 h. The solvent was removed at reduced pressure and the residue recrystallized from ethanol to give the product as a white solid (21 g, 79%). mp 104-105° C.; CIMS m/e calc'd for C
[0581] Step 2. Synthesis of Triketone 11 from 2.
[0582] A solution of 2 (1 g, 4.0 mmol) in dry DMF (2 mL) was treated with sodium hydride (0.15 g, 60% suspension in oil, 0.4 mmol) in one portion. After 1 h, 4-methoxyacetophenone (0.6 g, 4.0 mmol) was added in one portion and the reaction heated to 90° C. A second portion of sodium hydride (0.15 g, 60% suspension in oil, 0.4 mmol) was added and the exothermic reaction turns deep red. After 20 min, the reaction was cooled to 25° C., diluted with water (20 mL), extracted with EtOAc (10 mL) and the aqueous phase separated. The aqueous phase was acidified with 2 N HCl to pH 2 and the crude product collected. Recrystalization with ethanol gave the desired product as a yellow solid (0.4 g, 30%). mp 174-175° C.; CIMS m/e calc'd for C
[0583] Step 3. Synthesis of 12 from 11.
[0584] A solution of 11 (0.2 g, 0.6 mmol) in EtOH (5 mL) was treated with hydrazine hydrate (0.1 mL, 1.8 mmol) and p-TsOH (3 mg). The reaction was heated to reflux and stirred for 2 h. The reaction was cooled to 25° C. and the product collected as a yellow solid (0.1 g, 50%). mp 268° C.; CIMS m/e calc'd for C
[0585]
[0586] Step 1. Synthesis of 13 from 12.
[0587] A suspension of 12 (1.0 g, 3.0 mmol) in MeOH (10 mL) was treated with conc. HCl (1 mL) and heated to reflux. After 2 h, the reaction was cooled and the product was collected as a greenish solid (0.7 g, 81%). mp 273° C.; CIMS m/e calc'd for C
[0588] Step 2. Synthesis of 14 from 13.
[0589] A suspension of 13 (20 mg, 0.07 mmol) in dioxane (2 mL) was treated with aqueous sat. NaHCO3 (1 mL) and chloroacetyl chloride (30 mL, 0.21 mmol). The reaction was heated to 50° C. and stirred for 2 h. The reaction was cooled, poured into water (2 mL), extracted with EtOAc (10 mL), the organic layer separated, dried (MgSO
[0590] Prepared in a similar fashion as described for example II using cyclopropanecarboxoyl chloride as the starting material. mp 289° C.; CIMS m/e calc'd for C
[0591] Prepared in a similar fashion as described for example II using 2-methylpropanoyl chloride as the starting material. mp 288° C.; CIMS m/e calc'd for C
[0592] Prepared in a similar fashion as described for example II using propionyl chloride as the starting material. mp 287° C.; CIMS m/e calc'd for C
[0593] Prepared in a similar fashion as described for example II using cyclopentanecarboxoyl chloride as the starting material. mp 267° C.; CIMS m/e calc'd for C
[0594] Prepared in a similar fashion as described for example II using cyclobutanecarboxoyl chloride as the starting material. mp 297° C.; CIMS m/e calc'd for C
[0595] Prepared in a similar fashion as described for example II using phenylacetyl chloride as the starting material. mp 280° C.; CIMS m/e calc'd for C
[0596] Prepared in a similar fashion as described for example II using butyryl chloride as the starting material. mp 282° C.; CIMS m/e calc'd for C
[0597] Prepared in a similar fashion as described for example II using 4-chlorophenylacetyl chloride as the starting material. mp 238° C.; CIMS m/e calc'd for C
[0598] Prepared in a similar fashion as described for example II using 3-methoxyphenylacetyl chloride as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0599] Prepared in a similar fashion as described for example II using 4-methoxyphenylacetyl chloride as the starting material. mp 280° C.; CIMS m/e calc'd for C
[0600] Prepared in a similar fashion as described for example II using 3,4-dimethoxyphenylacetyl chloride as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0601] Prepared in a similar fashion as described for example II using 2,5-dimethoxyphenylacetyl chloride as the starting material. mp 226° C.; CIMS m/e calc'd for C
[0602] Prepared in a similar fashion as described for example I using 2-methoxyacetophenone as the starting material. mp 276° C.; CIMS m/e calc'd for C
[0603] Prepared in a similar fashion as described for example I using 3,4-dimethoxyacetophenone as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0604]
[0605] Step 1. Synthesis of 15 from 11.
[0606] A suspension of 11 (5 g, 14.8 mmol) in MeOH (50 mL) was treated with conc. HCl (3 mL) and heated to reflux. After stirring for 2 h, the reaction was cooled to 0° C. and the product collected as a yellow solid (4.2 g, 96%). mp 173° C.; CIMS m/e calc'd for C
[0607] Step 2. Synthesis of 16 from 15.
[0608] A suspension of 15 (20 mg, 0.07 mmol) in acetone (2 mL) was treated with NaHCO
[0609] Prepared in a similar fashion as described for example XVII using the acid chloride of 3-thiopheneacetic acid as the starting material. mp 293° C.; CIMS m/e calc'd for C
[0610] Prepared in a similar fashion as described for example XVII using the acid chloride of 2-methoxyphenylacetic acid as the starting material. mp 255° C.; CIMS m/e calc'd for C
[0611] Prepared in a similar fashion as described for example XVII using the acid chloride of 3,4-dichlorophenylacetic acid as the starting material. mp 299° C.; CIMS m/e calc'd for C
[0612] Prepared in a similar fashion as described for example XVII using the acid chloride of 2,4-dichlorophenylacetic acid as the starting material. mp 286° C.; CIMS m/e calc'd for C
[0613] Prepared in a similar fashion as described for example XVII using the acid chloride of 2-chlorophenylacetic acid as the starting material. mp 300° C.; CIMS m/e calc'd for C
[0614]
[0615] A suspension of 14 (15 mg, 0.04 mol) in EtOH (1 mL) was treated with conc. NH
[0616] Prepared in a similar fashion as described for example XXIII using hydroxylamine as the starting material. mp 243° C.; CIMS m/e calc'd for C
[0617] Prepared in a similar fashion as described for example XXIII using dimethylamine as the starting material. mp 279 ° C.; CIMS m/e calc'd for C
[0618] Prepared in a similar fashion as described for example XXIII using piperazine as the starting material. mp 277° C.; CIMS m/e calc'd for C
[0619] Prepared in a similar fashion as described for example XXIII using 4-methylpiperizine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0620] Prepared in a similar fashion as described for example XXIII using 4-hydroxyethylpiperizine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0621] Prepared in a similar fashion as described for example XXIII using piperidine as the starting material. mp 291° C.; CIMS m/e calc'd for C
[0622] Prepared in a similar fashion as described for example XXIII using 4-aminomethylpiperidine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0623] Prepared in a similar fashion as described for example XXIII using ethylamine as the starting material. mp 250° C.; CIMS m/e calc'd for C
[0624] Prepared in a similar fashion as described for example XXIII using thiomorpholine as the starting material. mp 298 IC; CIMS m/e calc'd for C
[0625] Prepared in a similar fashion as described for example XXIII using morpholine as the starting material. mp 295° C.; CIMS m/e calc'd for C
[0626] Prepared in a similar fashion as described for example XXIII using pyyrolidine as the starting material. mp 279° C.; CIMS m/e calc'd for C
[0627] Prepared in a similar fashion as described for example XXIII using 4-aminomethylpyridine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0628]
[0629] A suspension of 18 (10 mg, 0.02 mmol) in dioxane (1 mL) was treated with aqueous sat. NaHCO
[0630] Prepared in a similar fashion as described for example XXXII using methylchloroformate as the starting material. mp 257° C.; CIMS m/e calc'd for C
[0631] Prepared in a similar fashion as described for example XXIII and XXXII using chloroacetyl chloride and conc. NH
[0632] Prepared in a similar fashion as described for example XXIII and XXXII using chloroacetyl chloride and dimethyl amine as the starting materias. mp >300° C.; CIMS m/e calc'd for C
[0633] A solution of example XXXVI (20 mg, 0.04 mmol) in DMF (2 mL) was treated with 5% palladium on carbon (5 mg) and hydrogentaed at atmospheric pressure using a hydrogen baloon. After 2 h, the solution was filtered (Celite), and the solvent removed at reduced pressure. The residue was recrystallized from EtOH to give the product as a yellow solid (15 mg, 78%). mp >300° C.; CIMS m/e calc'd for C
[0634] Prepared in a similar fashion as described for example XXVII using the acid chloride of 4-azidophenylacetic acid as the starting material. mp 283° C.; CIMS m/e calc'd for C
[0635]
[0636] Step 1. Synthesis of 20 from 15.
[0637] A suspension of 15 (0.5 g, 1.7 mmol) in acetone (10 mL) was treated with NaHCO
[0638] Step 2. Synthesis of 21 from 20.
[0639] A solution of 20 (20 mg, 0.05 mmol) in DMSO (2 mL) was treated with aniline (20 mL, mmol) and dimethylaminopyridine (1 mg). The mixture was heated to 80° C. for 2 h. The reaction was cooled, poured into water (4 mL), extracted with EtOAc (15 mL), the organic layer separated, dried (MgSO
[0640] Prepared in a similar fashion as described for example XLII using butyl amine as the starting material. mp 252° C.; CIMS m/e calc'd for C
[0641] Prepared in a similar fashion as described for example XLII using 4-aminobenzyl amine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0642] Prepared in a similar fashion as described for example XLII using 4-aminomethylpyridine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0643]
[0644] A suspension of 12 (20 mg, 0.07 mmol) in CH
[0645]
[0646] A suspension of 13 (20 mg, 0.06 mmol) in formic acid (2 mL) was heated to 100° C. for 2 h. The reaction mixture was cooled and the solvent removed at reduced pressure. The residue was recrystallized from EtOH to give the desired product as a yellow solid (12 mg, 63%). mp 280° C.; CIMS m/e calc'd for C
[0647]
[0648] Step 1. Synthesis of 24 from 3-acetylpyridine.
[0649] A solution of 3-acetylpyridine (1.0 g, 8.3 mmol) in benzene (3 mL) was treated with 1,1-dimethylhydrazine (0.62 mL, 8.3 mmol) and p-TsOH (5 mg). The mixture was heated to 85° C. and stirred for 3 h. The reaction was cooled and the solvent removed at reduced pressure. This crude hydrazone was treated with 1.0 M NaN(TMS)2 in THF (16.6 mL, 16.6 mmol) at 25° C. over 5 min. After 30 min dimethyl 3-acetamidophthalate (2.1 g, 8.3 mmol) was added in one portion and the reaction heated to reflux. Stirring was continued for 6 h. The reaction was cooled and quenched by the slow addition of TFA. The solvent was removed at reduced pressure and the residue chromatographed (silica, 2.5-5% MeOH/CH
[0650] Step 2. Synthesis of 25 from 24.
[0651] A suspension of 24 (30 mg, 0.09 mmol) in EtOH (2 mL) was treated with hydrazine hydrate (0.05 mL) and p-TsOH (1 mg) and heated to reflux. After stirring for 2 h. the reaction was cooled and the product filtered to give a yellow solid (12 mg, 44%). mp >300° C.; CIMS m/e calc'd for C
[0652] Prepared in a similar fashion as described for example XLVIII using 4-acetylpyridine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0653] Prepared in a similar fashion as described for example XLVII using 4-acetylpyridine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0654] Prepared in a similar fashion as described for example I using acetophenone as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0655] Prepared in a similar fashion as described for example I using 4′-methylthioacetophenone as the starting material. mp 283° C.; CIMS m/e calc'd for C
[0656] Prepared by oxidation of the product of example LII. mp >300° C.; CIMS m/e calc'd for C
[0657] Prepared in a similar fashion as described for example I using 4′-(N,N-dimethylamino)acetophenone as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0658] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LIV and morpholine as the starting materials. mp >300° C.; CIMS m/e calc'd for C
[0659] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LIV and dimethylamine as the starting materials. mp >300° C.; CIMS m/e calc'd for C
[0660] Prepared in a similar fashion as described for example I using 41-(1-piperidinyl)acetophenone as the starting material. mp 291° C.; CIMS m/e calc'd for C
[0661] Prepared in a similar fashion as described for example I using 4′-morpholinylacetophenone as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0662] Prepared in a similar fashion as described for example I using 4′-ethoxyacetophenone as the starting material. mp 288° C.; CIMS m/e calc'd for C
[0663] Prepared in a similar fashion as described for example I using 4′-butylacetophenone as the starting material. mp 259° C.; CIMS m/e calc'd for C
[0664] Prepared in a similar fashion as described for example I using 4′-ethylacetophenone as the starting material. mp 294° C.; CIMS m/e calc'd for C
[0665] Prepared in a similar fashion as described for example I using 4′-n-propylacetophenone as the starting material. mp 269° C.; CIMS m/e calc'd for C
[0666] Prepared in a similar fashion as described for example XLII using concentrated ammonium hydroxide as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0667] Prepared in a similar fashion as described for example XLII using dimethylamino hydrazine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0668] Prepared in a similar fashion as described for example XLII using methylamine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0669] Prepared in a similar fashion as described for example XLII using N-aminomorpholine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0670] Prepared in a similar fashion as described for example XLII using cis-1,2-diaminocyclohexane as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0671] Prepared in a similar fashion as described for example XLII using (4-amino)methylpiperazine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0672] Prepared in a similar fashion as described for example XXIII using example XXX as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0673] Prepared in a similar fashion as described for example XXIII using 4-(2-pyridyl)piperazine as the starting material. mp >300° C.; CIMS m/e catc'd for C
[0674] Prepared in a similar fashion as described for example XXIII using 4-(aminoethyl)piperazine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0675] Prepared in a similar fashion as described for example XXIII using isonipecotamide as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0676] Prepared in a similar fashion as described for example XXIII using 4-hydroxypiperidine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0677] Prepared in a similar fashion as described for example XXIII using 4-(hydroxmethyl)piperidine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0678] Prepared in a similar fashion as described for example XXIII using 4-amidopiperazine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0679] Prepared in a similar fashion as described for example XXIII using 4-dimethylaminopiperidine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0680] Prepared in a similar fashion as described for example XXIII using 4-aminopiperidine as the starting material. mp >300° C.; CIMS m/e calc'd for C
[0681] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LIV and 1-methylpiperazine as the starting materials. mp >300° C.; ESI-MS m/e calc'd for C
[0682] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LIV and 4-(aminomethyl)piperidine as the starting materials. ESI-MS m/e calc'd for C
[0683] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LIV and 4-hydroxypiperidine as the starting materials. mp 267° C.; ESI-MS m/e calc'd for C
[0684] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LVIII and morpholine as the starting materials. mp 258° C.; ESI-MS m/e calc'd for C
[0685] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LVIII and 1-methylpiperazine as the starting materials. mp 258° C.; ESI-MS m/e calc'd for C
[0686] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LVIII and 4-hydroxypiperidine as the starting materials. mp 245° C.; ESI-MS m/e calc'd for C
[0687] Prepared in a similar fashion as described for examples II and XXIII employing the product of example LVIII and 4-(aminomethyl)piperidine as the starting materials. mp 240 ° C.; ESI-MS m/e calc'd for C
[0688] Prepared in a similar fashion as described for examples I, XXVII, and XLII employing the 4-(dimethylamino) acetophenone and 1-amino-4-methylpiperazine as the starting materials. mp >300° C.; ESI-MS m/e calc'd for C
[0689] Prepared in a similar fashion as described for example XLII using phenylthionochloroformate and 1-amino-4-methylpiperazine as the starting materials. mp >300° C.; CIMS m/e calc'd for C
[0690]
[0691] Step 1. Synthesis of 26 from 3-nitrophthalic Anhydride.
[0692] A solution of 3-nitrophthalic anhydride (2.5 g, 13 mmol) and 2-thenoyltrifluoroacetone (2.87 g, 13 mmol) in acetic anhydride (7.3 mL, 78 mmol) was treated with triethylamine (3.6 mL, 26 mmol) and stirred at 25° C. for 12 h. The solution was diluted with 1 N HCl (25 mL) and the precipate collected and washed with 0.1 M HCl (2×25 mL) and hexane (3×25 mL) to give the product as a yellow solid (1.5 g, 38%). mp 140-141° C.; APIMS (M+H) calc'd for C
[0693] Step 2. Synthesis of Triketone 27 from 26.
[0694] A solution of 26 (1 g, 3.3 mmol) in EtOH (12 mL) and water (12 mL) was treated with zinc (7.1 g, 110 mmol) and calcium chloride (240 mg, 2.2 mmol) and heated to reflux for 1.5 h. The reaction was filtered (Celite) and washed with EtOH/H20 (1:1, 3×200 mL), EtOAc (3×100 mL), MeOH (2×100 mL), and i-PrOH (2×100 mL). The filtrate was concentrated at reduced pressure to give an aqueous residue which was extracted with EtOAc (4×200 mL). The combined organic extracts were separated, dried (Na
[0695] Step 3. Synthesis of 28 from 27.
[0696] A solution of 27 (900 mg, 3.3 mmol) in acetic anhydride (20 mL) was refluxed for 1.5 h. The reaction mixture was treated heptane and the solvents were concentrated at reduced pressure to give a dark residue which was diluted with EtOAc (100 mL) and washed with H
[0697] Step 4. Synthesis of LXXXVII from 28.
[0698] A solution of 28 (200 mg, 0.64 mmol) in EtOH (2 mL) was treated with hydrazine hydrate (0.04 mL, 1.3 mmol) and p-TsOH (6 mg, 0.032 mmol). The reaction was heated to reflux and stirred for 12 h. The reaction was cooled to 25° C. and the solid filtered. Purification by reverse phase HPLC (CH
[0699] Prepared in a similar fashion as described for example LXXXVII using 1-cyclopropyl-4,4,4-trifluoro-1,3-butanedione as the starting material. mp 220-221° C.; CIMS (M+H) calc'd for C
[0700] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 1-methyl-3-pyrrolyl analog of 15 as the starting materials. mp >300° C.; ESIMS (M+H) calc'd for C
[0701] Prepared in a similar fashion as described for example LXXXVII and XLII using the 3-methyl-2-thienyl analog of 26 as the starting material. mp 275° C.; ESIMS (M+H) calc'd for C
[0702] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the ethyl analog of 15 as the starting materials. mp >250° C.; CIMS (M+H) calc'd for C
[0703] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the n-propyl analog of 15 as the starting materials. mp 187-189° C.; CIMS (M+H) calc'd for C
[0704] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 1-propyl analog of 15 as the starting materials. mp >250° C.; CIMS (M+H) calc'd for C
[0705] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the c-propyl analog of 15 as the starting materials. mp 252-253° C.; ESIMS (M−H) calc'd for C
[0706] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the c-hexyl analog of 15 as the starting materials. mp 178-179° C.; ESIMS (M+H) calc'd for C
[0707] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 2-thienyl analog of 15 as the starting materials. mp 214° C.; CIMS m+ calc'd for C
[0708] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 3-methyl-2-thienyl analog of 15 as the starting materials. mp 270° C.; ESIMS (M+H) calc'd for C
[0709] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 5-methyl-2-thienyl analog of 15 as the starting materials. mp >280° C.; ESIMS (M+H) calc'd for C
[0710] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 5-ethylcarboxyl-2-thienyl analog of 15 as the starting materials. mp >280° C.; ESIMS (M+H) calc'd for C
[0711] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 3-thienyl analog of 15 as the starting materials. mp >280° C.; ESIMS (M+H) calc'd for C
[0712] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 5-chloro-3-thienyl analog of 15 as the starting materials. mp >300° C.; ESIMS (M+H) calc'd for C
[0713] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 2,5-dimethyl-3-thienyl analog of 15 as the starting materials. mp >280° C.; ESIMS (M+H) calc'd for C
[0714] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 2-furanyl analog of 15 as the starting materials. mp 278° C.; ESIMS (M+H) calc'd for C
[0715] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the i-propyl analog of 15 as the starting materials. mp 231-233° C.; ESIMS (M+H) calc'd for C
[0716] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the c-propyl analog of 15 as the starting materials. mp XXX° C.; ESIMS (M+H) calc'd for C
[0717] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the c-hexyl analog of 15 as the starting materials. mp 229-231° C.; ESIMS (M+H) calc'd for C
[0718] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the 2-thienyl analog of 15 as the starting materials. mp 279° C.; ESIMS (M+H) calc'd for C
[0719] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the 5-methoxy-2-thienyl analog of 15 as the starting materials. mp 280° C.; ESIMS (M+H) calc'd for C
[0720] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the 5-methyl-2-thienyl analog of 15 as the starting materials. mp >280° C.; ESIMS (M+H) calc'd for C
[0721] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the 5-ethylcarboxyl-2-thienyl analog of 15 as the starting materials. mp 252° C.; ESIMS (M+H) calc'd for C
[0722] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the 3-thienyl analog of 15 as the starting materials. mp 202° C.; ESIMS (M+H) calc'd for C
[0723] Prepared in a similar fashion as described for example LXXXVII and XLII using ammonia and the 1-methyl-3-pyrrolyl analog of 15 as the starting materials. mp >300° C.; ESIMS (M+H) calc'd for C
[0724] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the 2,5-dimethyl-3-thienyl analog of 15 as the starting materials. mp 252° C.; ESIMS (M+H) calc'd for C
[0725] Prepared in a similar fashion as described for example LXXXVII and XLII using 1,1-dimethylhydrazine and the 2-furanyl analog of 15 as the starting materials. mp 202° C.; ESIMS (M+H) calc'd for C
[0726] Prepared in a similar fashion as described for example XXIII using isonipecotamide and the 1-propyl analog of 14 as the starting materials. mp 224-225° C.; ESIMS (M+H) calc'd for C
[0727] Prepared in a similar fashion as described for example XXIII using isonipecotamide and the c-hexyl analog of 14 as the starting materials. mp 228-229° C.; ESIMS (M+H) calc'd for C
[0728] Prepared in a similar fashion as described for example XXIII using 4-(aminomethyl)piperidine and the ethyl analog of 14 as the starting materials. mp 174-176° C.; ESIMS (M+H) calc'd for C
[0729] Prepared in a similar fashion as described for example XXIII using 4-(aminomethyl)piperidine and the 1-propyl analog of 14 as the starting materials. mp 218-220° C.; ESIMS (M+H) calc'd for C
[0730] Prepared in a similar fashion as described for example XXIII using 4-(aminomethyl)piperidine and the c-propyl analog of 14 as the starting materials. mp 138-140° C.; ESIMS (M+H) calc'd for C
[0731] Prepared in a similar fashion as described for example XXIII using 4-(aminomethyl)piperidine and the c-hexyl analog of 14 as the starting materials. mp 196-198° C.; ESIMS (M+H) calc'd for C
[0732] Prepared in a similar fashion as described for example LXXXVII and XLII using 1-amino-4-methylpiperazine and the i-propyl analog of 15 as the starting materials. mp 231-233° C.; ESIMS (M+H) calc'd for C
[0733] Prepared in a similar fashion as described for example LXXXVII and XLII using 1-amino-4-methylpiperazine and the 5-ethylcarboxyl-2-thienyl analog of 15 as the starting materials. mp 249° C.; ESIMS (M+H) calc'd for C
[0734]
[0735] A solution of CXXII (30 mg, 0.05 mmol) in 3:1 THF/water (2 mL) was treated with LiOH (23 mg, 0.5 mmol) and the reaction was stirred at 25° C. for 12 h and then heated to reflux for 1 h. The organic solvent was removed at reduced pressure and the residue was partioned between EtOAc (5 mL) and water (5 mL). The organic layer was separated and the aqueous phase was adjusted to pH=2 with 1 M HCl and re-extracted with EtOAc (5 mL). The combined organic layers were dried (Na
[0736] Prepared in a similar fashion as described for example LXXXVI using 1-amino-4-methylpiperazine and the 2,5-dimethyl-3-thienyl analog of 15 as the starting materials. mp 250° C.; ESIMS (M+H) calc'd for C
[0737] Prepared in a similar fashion as described for example LXXXVI using 4-aminomorpholine and the 1-propyl analog of 15 as the starting materials. mp 256-258° C.; ESIMS (M−H) calc'd for C
[0738]
[0739] Step 1. Synthesis of 29A from 4-acetylpiperidine hydrochloride.
[0740] A solution of 4-acetylpiperidine hydrochloride (8.18 g, 0.05 mol) in THF (100 mL) at 0° C. was treated with triethylamine (13.93 mL, 0.1 mol) and stirred for 15 min. The reaction mixture was treated with a solution of di-t-butyldicarbonate (10.91 g, 0.05 mol) in THF (50 mL) and stirred at 25° C. for 1 h. The reaction mixture was diluted with water (100 mL) and extracted with EtOAc (100 mL). The organic layer was separated, dried (MgSO
[0741] Step 2. Synthesis of 29B from 29A.
[0742] Prepared in a similar fashion as described for example LXXXVII, Step 1, using 3-nitrophthalic anhydride and 29A as the starting materials. mp 132-134° C.; ESI-MS (M+H) calc'd for C
[0743] Step 3. Synthesis of 29C from 29B.
[0744] Prepared in a similar fashion as described for example LXXXVII, Step 2, using 29B as the starting material. mp 187-189° C.; ESI-MS (M+H) calc'd for C
[0745] Step 4. Synthesis of 29D from 29C.
[0746] A suspension of C (8.0 g, 21.5 mmol) in acetone (200 mL) was treated with NaHCO
[0747] Step 5. Synthesis of 29E from 29D.
[0748] A solution of 29D (4.93 g, 0.01 mol) in dimethylsulfoxide (30 mL) was treated with 4-aminomorpholine (2.04 g, 0.02 mol) and heated to 90° C. in a sealed tube for 6 hours. The solvent was removed at reduced pressure and the residue was taken up in water (30 mL). The solid was filtered to give the product as a yellow solid (5.0 g, 99%). mp 164-166° C.; ESI-MS (M+H) calc'd for C
[0749] Step 6. Synthesis of 29F from 29E.
[0750] Prepared in a similar fashion as described for example LXXXVII, Step 4, using 29E (5.0 g, 0.01 mol) as the starting material to give the product as a yellow solid (3.8 g, 77%). mp 201-203° C.; ESI-MS (M−H) calc'd for C
[0751] Step 7. Synthesis of 29G from 29F.
[0752] A solution of 29F (1.8 g, 3.6 mmol) in methylene chloride (25 mL) was treated with trifluoroacetic acid (2.8 mL, 36 mmol) and stirred at 25° C. for 3 h. The organic solvent was removed at reduced pressure and rediluted with methylene chloride (25 mL). Removal of the organic solvent again at reduced pressure gave a solid which was treated with ether (25 mL) and stirred at 25° C. for 16 h. The solid was filtered to give the product as a yellow solid (1.8 g, 98%). mp 282-284° C.; ESI-MS (M+H) calc'd for C
[0753] Step 8. Synthesis of CXXVI from 29G.
[0754] A suspension of 29G (0.03 g, 0.059 mmol) in acetone (1 mL) was treated with NaHCO
[0755] Prepared in a similar fashion as described for example LXXXVII and XLII using 4-aminomorpholine and the 5-methyl-2-thienyl analog of 15 as the starting materials. mp 261° C.; ESIMS (M+H) calc'd for C
[0756] Prepared in a similar fashion as described for example LXXXVII and XLII using 4-aminomorpholine and the 5-chloro-3-thienyl analog of 15 as the starting materials. mp 259° C.; ESIMS (M+H) calc'd for C
[0757] Prepared in a similar fashion as described for example LXXXVII and XLII using 4-aminomorpholine and the 2,5-dimethyl-3-thienyl analog of 15 as the starting materials. mp >280° C.; ESIMS (M+H) calc'd for C
[0758] Prepared in a similar fashion as described for example LXXXVII and XLII using 4-aminomorpholine and the 5-ethylcarboxyl-2-thienyl analog of 15 as the starting materials. mp 258° C.; ESIMS (M+H) calc'd for C
[0759] Prepared in a similar fashion as described for example CXXIII using CXXX as starting material. mp 273° C.; ESIMS (M+H) calc'd for C
[0760]
[0761] A solution of benzylamine (0.01 mL, 0.09 mmol) in DMF (1 mL) was treated with acid CXXXI (40 mg, 0.09 mmol) and stirred at 25° C. The reaction was treated with TBTU (29 mg, 0.09 mmol) and stirred at 25° C. for 30 min. Triethylamine (0.01 mL, 0.09 mmol) was added and the reaction stirred at 25° C. for 12 h. After adding more TBTU (15 mg, 0.045 mmol) and triethylamine (0.01 mL, 0.09 mmol) the reaction was stirred at 25° C. for an additional 4 h. The reaction was diluted with EtOAc (10 mL) and water (10 mL) and the aqueous layer was extracted with EtOAc (5×10 mL). The combined organic layers were dried (Na2SO4), filtered, and the solvent removed at reduced pressure. Purification of the residue using reverse phase HPLC gave the product as a yellow solid (21 mg, 42%). mp 275° C.; ESIMS (M+H) calc'd for C
[0762] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-amino-4-methylpiperazine as the starting materials. mp 190° C. (TFA salt); ESIMS (M+H) calc'd for C
[0763] Prepared in a similar fashion as described for example CXXXII using CXXXI and 2-(2-aminoethyl)-1-methylpyrrolidine as the starting materials. mp 235° C. (TFA salt); ESIMS (M+H) calc'd for C
[0764] Prepared in a similar fashion as described for example CXXXII using CXXXI and l,l-dimethylhydrazine as the starting materials. mp 201° C. (TFA salt); ESIMS (M+H) calc'd for C
[0765] Prepared in a similar fashion as described for example CXXXII using CXXXI and N,N-dimethylethylenediamine as the starting materials. mp 190° C. (TFA salt); ESIMS (M+H) calc'd for C
[0766] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-(2-aminoethyl)pyrrolidine as the starting materials. mp 224° C. (TFA salt); ESIMS (M+H) calc'd for C
[0767] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-(2-aminoethyl)morpholine as the starting materials. mp 241° C. (TFA salt); ESIMS (M+H) calc'd for C
[0768] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-aminomorpholine as the starting materials. mp 271° C. (TFA salt); ESIMS (M+H) calc'd for C
[0769] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-(3-aminopropyl)-2-pyrrolidinone as the starting materials. mp 260° C. (TFA salt); ESIMS (M+H) calc'd for C
[0770] Prepared in a similar fashion as described for example CXXXII using CXXXI and 3-(2-aminoethyl)pyridine as the starting materials. mp 203° C. (TFA salt); ESIMS (M+H) calc'd for C
[0771] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-(3-aminopropyl)imidazole as the starting materials. mp 263° C. (TFA salt); ESIMS (M+H) calc'd for C
[0772] Prepared in a similar fashion as described for example CXXXII using CXXXI and 2-(2-aminoethyl)pyridine as the starting materials. mp >280° C. (TFA salt); ESIMS (M+H) calc'd for C
[0773] Prepared in a similar fashion as described for example CXXXII using CXXXI and 2-(aminomethyl)pyridine as the starting materials. mp 239° C. (TFA salt); ESIMS (M+H) calc'd for C
[0774] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-(2-aminoethyl)piperidine as the starting materials. mp 228° C. (TFA salt); ESIMS (M+H) calc'd for C
[0775] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-aminopyrrolidine as the starting materials. mp 213-215° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0776] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-aminopiperidine as the starting materials. mp 189-191° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0777] Prepared in a similar fashion as described for example CXXXII using CXXXI and piperidine as the starting materials. ESI-MS (M+H) calc'd for C
[0778] Prepared in a similar fashion as described for example CXXXII using CXXXI and piperazine as the starting materials. mp 241-242° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0779] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-methylpiperazine as the starting materials. mp 186-187° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0780] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-ethylpiperazine as the starting materials. mp 186-188° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0781] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-(2-hydroxyethyl)piperazine as the starting materials. mp 186-187° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0782] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-(cyclopropylmethyl)piperazine as the starting materials. mp 211-212° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0783] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-t-butoxycarbonylpiperazine as the starting materials. mp 225-226° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0784] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-(2-pyridyl)piperazine as the starting materials. mp 201-202° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0785] Prepared in a similar fashion as described for example CXXXII using CXXXI and (1S,4S)-(+)-2,5-diazabicyclo[2.2.1]heptane as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0786] Prepared in a similar fashion as described for example CXXXII using CXXXI and (lS,4S)-(+)-2-methyl-2,5-diazabicyclo[2.2.1]heptane as the starting materials. mp 224-225° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0787] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-(N,N-dimethylamino)piperidine as the starting materials. mp 185-186° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0788] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-pyrrolidinopiperidine as the starting materials. mp 228° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0789] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-piperidinopiperidine as the starting materials. ESI-MS (M+H) calc'd for C
[0790] Prepared in a similar fashion as described for example CXXXII using CXXXI and cyclohexylamine as the starting materials. mp 264-267° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0791] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-aminopiperidine as the starting materials. mp 224-226° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0792] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-amino-1-(t-butoxycarbonyl)piperidine as the starting materials. mp 229-230° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0793] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-methyl-4-(methylamino)piperidine as the starting materials. mp 230° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0794] Prepared in a similar fashion as described for example CXXXII using CXXXI and 3-(N,N-dimethylamino)piperidine as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0795] Prepared in a similar fashion as described for example CXXXII using CXXXI and 3-(p-toluenesulfonylamino)piperidine as the starting materials. mp 193-194° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0796] Prepared in a similar fashion as described for example CXXXII using CXXXI and 3-hydroxypiperidine as the starting materials. ESI-MS (M+H) calc'd for C
[0797] Prepared in a similar fashion as described for example CXXXII using CXXXI and 3-aminopiperidine as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0798] Prepared in a similar fashion as described for example CXXXII using CXXXI and (S)-(−)-3-aminoquinuclidine as the starting materials. mp 245-246° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0799] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1,3-diaminocyclohexane as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0800] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-amino-3-(t-butoxycarbonylamino)cyclohexane as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C31H38N706S: 636.2604, found: 636.2625.
[0801] Prepared in a similar fashion as described for example CXXXII using CXXXI and 2-(dimethylaminomethyl)piperidine as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0802] Prepared in a similar fashion as described for example CXXXII using CXXXI and 2-(diethylaminomethyl)piperidine as the starting materials. mp 210-212° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0803] Prepared in a similar fashion as described for example CXXXII using CXXXI and pyrrolidine as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0804] Prepared in a similar fashion as described for example CXXXII using CXXXI and 3-aminopyrrolidine as the starting materials. mp 201-202° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0805] Prepared in a similar fashion as described for example CXXXII using CXXXI and (S)-3-N-methylaminopyrrolidine as the starting materials. ESI-MS (M+H) calc'd for C
[0806] Prepared in a similar fashion as described for example CXXXII using CXXXI and (S)-3-N-acetamidopiperidine as the starting materials. mp 264-265° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0807] Prepared in a similar fashion as described for example CXXXII using CXXXI and (S)-3-(N-acetyl-N-methylamino)piperidine as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0808] Prepared in a similar fashion as described for example CXXXII using CXXXI and (S)-3-(N-t-butoxycarbonyl-N-methylamino)piperidine as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0809] Prepared in a similar fashion as described for example CXXXII using CXXXI and 3-(N,N-dimethylamino)pyrrolidine as the starting materials. mp 216-217° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0810] Prepared in a similar fashion as described for example CXXXII using CXXXI and (R)-3-(N,N-dimethylamino)pyrrolidine as the starting materials. mp 265° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0811] Prepared in a similar fashion as described for example CXXXII using CXXXI and (S)-3-(N,N-dimethylamino)pyrrolidine as the starting materials. mp 264-265° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0812] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-methyl-3-(methylamino)pyrrolidine as the starting materials. mp 151-153° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0813] Prepared in a similar fashion as described for example CXXXII using CXXXI and (R)-2-(pyrrolidinomethyl)pyrrolidine as the starting materials. mp 166-167° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0814] Prepared in a similar fashion as described for example CXXXII using CXXXI and (S)-2-(hydroxymethyl)pyrrolidine as the starting materials. mp 267-268° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0815] Prepared in a similar fashion as described for example CXXXII using CXXXI and (R)-2-(methoxymethyl)pyrrolidine as the starting materials. mp 262° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0816] Prepared in a similar fashion as described for example CXXXII using CXXXI and (S)-2-(phenylaminomethyl)pyrrolidine as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0817] Prepared in a similar fashion as described for example CXXXII using CXXXI and (R)-1-amino-2-(methoxymethyl)pyrrolidine as the starting materials. mp 266-267° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0818] Prepared in a similar fashion as described for example CXXXII using CXXXI and homopiperidine as the starting materials. ESI-MS (M+H) calc'd for C
[0819] Prepared in a similar fashion as described for example CXXXII using CXXXI and homopiperazine as the starting materials. mp 209° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0820] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-methylhomopiperazine as the starting materials. mp 207-208° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0821] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-ethylhomopiperazine as the starting materials. mp 192-193° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0822] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-(cyclopropylmethyl)homopiperazine as the starting materials. mp 194-196° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0823] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-t-butoxycarbonylhomopiperazine as the starting materials. mp 210-211° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0824] Prepared in a similar fashion as described for example CXXXII using CXXXI and 1-acetylhomopiperazine as the starting materials. mp 274-275° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0825] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-(methylamino)aniline as the starting materials. mp 230° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0826] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-(acetamido)aniline as the starting materials. mp 253-254° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0827] Prepared in a similar fashion as described for example CXXXII using CXXXI and 4-(diethylamino)aniline as the starting materials. mp 198-199° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0828] Prepared in a similar fashion as described for example CXXXII using CXXXI and 5-amino-3-cyclopropyl-1-methylpyrazole as the starting materials. mp 290° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0829] Prepared in a similar fashion as described for example LXXXVII and XLII using 4-aminomorpholine and the 1-methyl-3-pyrrolyl analog of 15 as the starting materials. mp 301° C.; ESI-MS (M+H) calc'd for C
[0830] Prepared in a similar fashion as described for example LXXXVII and XLII using 1-amino-2(R)-(methoxymethyl)pyrrolidine and the 5-carboethoxy-2-thienyl analog of 15 as the starting materials. mp 221-222° C.; ESI-MS (M+H) calc'd for C
[0831] Prepared in a similar fashion as described for example CXXIII using CCI as the starting material. mp 258-259° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0832] Prepared in a similar fashion as described for example CXXXII using 1-methylpiperazine and CCII as the starting materials. mp 181-183° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0833] Prepared in a similar fashion as described for example CXXXII using piperazine and CCII as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0834] Prepared in a similar fashion as described for example CXXXII using 1-t-butoxycarbonylpiperazine and CCII as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0835] Prepared in a similar fashion as described for example CXXXII using 1-methylhomopiperazine and CCII as the starting materials. mp 176-177° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0836] Preparation of 3-(5-homopiperazinocarbonyl-2-thienyl)-5-(2(R)-(methoxymethy l)pyrrolidinocarbamoylamino)indeno[1,2-c]pyrazol-4-one
[0837] Prepared in a similar fashion as described for example CXXXII using homopiperazine and CCII as the starting materials. mp 185-186° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0838] Prepared in a similar fashion as described for example CXXXII using 1-t-butoxycarbonylhomopiperazine and CCII as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0839] Prepared in a similar fashion as described for example LXXXVI employing 1-(4-(trifluoromethyl)phenyl)-4,4,4-trifluoro-1,3-butanedion
e as the starting material. mp >300 ° C.; ESI -MS m/e calc'd for C
[0840]
[0841] Step 1. Synthesis of 30
[0842] To a suspension of 139 g (680 mmol) of 4-piperazinoacetophenone in 700 mL of tetrahydrofuran at 25° C. was added slowly over 20 min. a solution of 157 g (720 mmol) of di-tert-butyl dicarbonate in 300 mL of tetrahydrofuran. The resulting mixture was refluxed for 15 h. After cooling the mixture was filtered, and the filtrate was concentrated under vacuum to provide an off-white solid. This crude product was recrystallized from diethyl ether/hexane to afford 192 g of the 30 as a white solid. NMR (CDCl
[0843] Step 2. Synthesis of 31 from 30
[0844] To a solution of 192 g (630 mmol) of 30 and 90 mL (750 mmol) of ethyl trifluoroacetate in 1000 mL of tetrahydrofuran at 25° C. was added slowly over 15 min. 280 mL (750 mmol) of 21% sodium ethoxide in ethanol, and the resulting solution then was stirred at 25° C. for 16 h. The reaction mixture was diluted with 500 mL of water, and to this mixture was added 45 mL of acetic acid. The resulting precipitate was recovered by filtration. The solids were washed with diethyl ether/hexane and dried to furnish 236 g of 31 as an orange solid. NMR (CDCl
[0845] Step 3. Synthesis of 32 from 31
[0846] A suspension of 117 g (610 mmol) of 3-nitrophthalic anhydride in 560 mL of acetic anhydride was heated until the mixture became homogeneous, and the solution then was allowed to cool to room temperature. To this solution was added 236 g (590 mmol) of 31. The resulting mixture was cooled to 0° C., and 165 mL (1200 mmol) of triethylamine was added slowly over 10 min. The mixture was allowed to warm to 25° C., was stirred at 25° C. for 1 h, and then was heated to 65° C. for 0.5 h. After cooling to room temperature, the reaction mixture was poured into a well-stirred solution of 1200 mL of 1.0 N hydrochloric acid and 2000 mL of ethanol. The resulting precipitate was recovered by filtration, washed with ethanol, and dried to provide 140 g of 32 as an orange solid. NMR (acetone-d
[0847] Step 4. Synthesis of 33 from 32
[0848] To a solution of 12.00 g (25 mmol) of 32 in 500 mL of ethanol and 50 mL of conc. ammonium hydroxide at 25° C. was added 500 mL of water, followed by 15.3 g (88 mmol) of sodium dithionite. The resulting mixture was stirred at 25° C. for 16 h. The reaction mixture was filtered, and the filtrate was reduced to ˜½ the original volume under vacuum. This solution was adjusted to pH 3 employing hydrochloric acid and then extracted with ethyl acetate. The combined extracts were washed with water and brine, dried over anhyd. sodium sulfate, filtered, and concentrated. The resulting solids were recrystallized from ethanol/water to provide 8.40 g of 33 as a green solid. NMR (DMSO-d
[0849] Step 5. Synthesis of 35 from 33 and 34.
[0850] A solution of 4.50 g (10 mmol) of 33, 4.45 g (20 mmol) of 34, 3.68 g (30 mmol) of 4-dimethylaminopyridine, and 80 mL of DMSO was stirred at 90° C. for 2.5 h. After cooling to room temperature the reaction mixture was poured into a well-stirred solution of 80 mL of ethanol and 30 mL of 1N hydrochloric acid. The resulting solution was diluted further by the slow addition of 120 mL of water. A precipitate formed. It was recovered by filtration, washed with 50% aqueous ethanol, and dried to provide 3.83 g of 35 as an orange solid. NMR (DMSO-d
[0851] Step 6. Synthesis of CCX from 35.
[0852] A mixture of 3.82 g (6.6 mmol) of 35, 0.64 mL (13.2 mmol) of hydrazine monohydrate, 0.090 g (1.32 mmol) of hydrazine hydrochloride, and 130 mL of ethanol was refluxed for 18 h. While still at reflux the solution was diluted by the dropwise addition of 30 mL of water. The mixture then was allowed to cool to room temperature. The resulting precipitate was recovered by filtration, washed with 80% aqueous ethanol, and dried to afford 1.80 g of CCX as a yellow solid. mp 242° C.; ESI-MS m/e calc'd for C
[0853] A solution of CCX (0.58 g, 1.0 mmol) in 20 mL of trifluoroacetic acid was stirred at 25° C. for 2 h. The reaction mixture was concentrated under vacuum, and the residue was recrystallized from ethanol to provide 0.53 g of the yellow product as its TFA-salt. mp 263° C.; ESI-MS m/e calc'd for C
[0854] Prepared in a similar fashion as described for examples CCX and CCXI employing 2-(4-(4-t-butoxycarbonyl-1-piperazinyl)benzoyl)-4-amino-1,3-
indanedione obtained in example CCX and ammonia as the starting materials. mp 257° C. (TFA salt); ESI-MS m/e calc'd for C
[0855] Prepared in a similar fashion as described for examples CCX and CCXI employing 2-(4-(4-t-butoxycarbonylpiperazino)benzoyl)-4-amino-1,3-inda
nedione obtained in example CCX and hydrazine as the starting materials. mp 257° C. (TFA salt); ESI-MS m/e calc'd for C
[0856] Prepared employing 2-(4-(4-t-butoxycarbonylpiperazino)benzoyl)-4-amino-1,3-inda
nedione obtained in example CCX as the starting material. Chloroacetylation and treatment with dimethylamine in a similar fashion as described for examples II and XXIII, followed by treatment with hydrazine and removal of the t-butoxycarbonyl group in a similar fashion as described for examples I and CCXI, afforded the example compound. mp 243° C. (TFA salt); ESI-MS m/e calc'd for C
[0857] Prepared employing 2-(4-(4-t-butoxycarbonylpiperazino)benzoyl)-4-amino-1,3-inda
nedione obtained in example CCX as the starting material. Chloroacetylation and treatment with morpholine in a similar fashion as described for examples II and XXIII, followed by treatment with hydrazine and removal of the t-butoxycarbonyl group in a similar fashion as described for examples I and CCXI, afforded the example compound. mp 259° C. (TFA salt); ESI-MS m/e calc'd for C
[0858] Prepared employing 2-(4-(4-t-butoxycarbonylpiperazino)benzoyl)-4-amino-1,3-inda
nedione obtained in example CCX as the starting material. Chloroacetylation and treatment with 1-methylpiperazine in a similar fashion as described for examples II and XXIII, followed by treatment with hydrazine and removal of the t-butoxycarbonyl group in a similar fashion as described for examples I and CCXI, afforded the example compound. ESI-MS m/e calc'd for C
[0859] Prepared employing 2-(4-(4-t-butoxycarbonylpiperazino)benzoyl)-4-amino-1,3-inda
nedione obtained in example CCX as the starting material. Chloroacetylation and treatment with 4-(aminomethyl)piperidine in a similar fashion as described for examples II and XXIII, followed by treatment with hydrazine and removal of the t-butoxycarbonyl group in a similar fashion as described for examples I and CCXI, afforded the example compound. mp 239° C. (TFA salt); ESI-MS m/e calc'd for C
[0860]
[0861] To a solution of CCXI (0.17 g, 0.29 mmol) in 10 mL of methanol and 2 mL of water at 25° C. was added sequentially 37% aqueous formaldehyde (0.45 g, 5.8 mmol), sodium cyanoborohydride (0.18 g, 2.9 mmol), and 4 drops of acetic acid. The resulting solution was stirred at 25° C. for 16 h. The mixture was diluted with water. It then was made acidic (˜pH 1) with conc. hydrochloric acid and stirred for 10 min. The solution next was made basic (˜pH 13) with 50% aqueous sodium hydroxide and finally adjusted to pH 10 with 1 N hydrochloric acid. The mixture was extracted with 4:1 chloroform/isopropanol. The combined extracts were washed with water and brine, dried over anhydrous sodium sulfate, and filtered. To the filtrate was added excess trifluoroacetic acid, and the solution was concentrated under vacuum. The residue was recrystallized from isopropanol to furnish 0.16 g (92%) of the yellow product as its TFA-salt. mp 245° C.; ESI-MS m/e calc'd for C
[0862] Prepared in a similar fashion as described for example CCXVIII employing CCXI and acetaldehyde as the starting materials. mp 245° C. (TFA salt); ESI-MS m/e calc'd for C
[0863] Prepared in a similar fashion as described for example CCXVIII employing CCXI and acetone as the starting materials. mp 253° C. (TFA salt); ESI-MS m/e calc'd for C
[0864] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1,1-dimethylhydrazine as the starting materials. mp 238° C. (TFA salt); ESI-MS m/e calc'd for C
[0865] Prepared in a similar fashion as described for example CCXVIII employing CCXI as the starting material. mp 192° C. (TFA salt); ESI-MS m/e calc'd for C
[0866] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-4-methylpiperazine as the starting materials. mp 254° C. (TFA salt); ESI-MS m/e calc'd for C
[0867] Prepared in a similar fashion as described for example CCXVIII employing CCXXIII as the starting material. mp 293° C. (TFA salt); ESI-MS m/e calc'd for C
[0868] Prepared in a similar fashion as described for example CCXVIII employing CCXXIII and acetaldehyde as the starting materials. ESI-MS m/e calc'd for C
[0869] Prepared in a similar fashion as described for example CCXVIII employing CCXXIII and acetone as the starting materials. mp 272° C. (TFA salt); ESI-MS m/e calc'd for C
[0870] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-2,6- dimethylpiperidine as the starting materials. mp 270° C. (TFA salt); ESI-MS m/e calc'd for C
[0871] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-4-(2-hydroxyethyl)piperazine as the starting materials. mp 279° C. (TFA salt); ESI-MS m/e calc'd for C
[0872] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-2(R)-(methoxymethyl)pyrrolidine as the starting materials. ESI-MS m/e calc'd for C
[0873] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-2(S)-(methoxymethyl)pyrrolidine as the starting materials. ESI-MS m/e calc'd for C
[0874] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-2(R)-(1-methoxy-1-methylethyl)pyrrolidine as the starting materials. mp 221° C. (TFA salt); ESI-MS m/e calc'd for C
[0875] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-2(S)-(1-methoxy-1-methylethyl)pyrrolidine as the starting materials. mp 218° C. (TFA salt); ESI-MS m/e calc'd for C
[0876] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-2(R)-(hydroxymethyl)pyrrolidine as the starting materials. mp 193° C. (TFA salt); ESI-MS m/e calc'd for C
[0877] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and I-amino-2(S)-(hydroxymethyl)pyrrolidine as the starting materials. mp 190 ° C. (TFA salt); ESI-MS m/e calc'd for C
[0878] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-2(R)-(benzyloxymethyl)pyrrolidine as the starting materials. mp 207° C. (TFA salt); ESI-MS m/e calc'd for C
[0879] Prepared in a similar fashion as described for example CCXI employing 33 from example CCX and 1-amino-2(S)-(benzyloxymethyl)pyrrolidine as the starting materials. ESI-MS m/e calc'd for C
[0880] Prepared in a similar fashion as described for example CCXI and CCX employing 4-(4-tert-butoxycarbonyl-3-methylpiperazino)acetophenone as the starting materials. mp 230° C. (TFA salt); ESI-MS m/e calc'd for C
[0881] Prepared in a similar fashion as described for example CCXI and CCX employing 4-(cis-4-tert-butoxycarbonyl-3,5-dimethylpiperazino)acetophe
none as the starting materials. mp 237° C. (TFA salt); ESI-MS m/e calc'd for C
[0882] Prepared in a similar fashion as described for example CCXVIII employing CCXXXVIII as the starting material. mp 240° C. (TFA salt); ESI-MS m/e calc'd for C
[0883] Prepared in a similar fashion as described for example CCXVIII, CCXI, and CCX employing 4-(4-tert-butoxycarbonylpiperazino)-2-methylacetophenone as the starting materials. ESI-MS m/e calc'd for C
[0884] Prepared in a similar fashion as described for example CCXI and CCX employing 4-(4-tert-butoxycarbonylhomopiperazino)acetophenone as the starting materials. mp 253° C. (TFA salt); ESI-MS m/e calc'd for C
[0885] Prepared in a similar fashion as described for example CCXVIII employing CCXLI as the starting material. ESI-MS m/e calc'd for C
[0886] Prepared in a similar fashion as described for example CCXVIII employing CCXLI and acetaldehyde as the starting materials. mp 240° C. (TFA salt); ESI-MS m/e calc'd for C
[0887] Prepared in a similar fashion as described for example CCXVIII employing CCXLI and acetone as the starting materials. mp 245° C. (TEA salt); ESI-MS mie calc'd for C
[0888] Prepared in a similar fashion as described for example CCXI and CCX employing 4-(4-tert-butoxycarbonylhomopiperazino)-2-methylacetophenone
as the starting materials. mp 209° C. (TFA salt); ESI-MS m/e calc'd for C
[0889] Prepared in a similar fashion as described for example CCXVIII employing CCXLV and acetaldehyde as the starting materials. mp 217° C. (TFA salt); ESI-MS m/e calc'd for C
[0890] Prepared in a similar fashion as described for example CCXVIII employing CCXLV and acetone as the starting materials. mp 197° C. (TFA salt); ESI-MS m/e calc'd for C
[0891]
[0892] Step 1. Synthesis of 36.
[0893] Prepared in a similar fashion as described for example CCX employing 4-(4,4-ethylenedioxypiperidino)acetophenone as starting material.
[0894] Step 2. Synthesis of 37 from 36.
[0895] A mixture of 12.40 g (23.4 mmol) of 36, 500 mL of acetone, 125 mL of water, and 25 mL of trifluoroacetic acid was refluxed for 24 h. After cooling to room temperature the mixture was concentrated under vacuum. The residue was slurried in 95% aqueous ethanol, and the mixture was adjusted to pH 7 employing aqueous sodium hydroxide solution. The resulting mixture was filtered. The recovered solids were washed with 95% aqueous ethanol and dried to afford 10.68 g of 37 as a yellow solid. NMR (DMSO-d
[0896] Step 3. Synthesis of CCXLVIII from 37.
[0897] To a mixture of 1.00 g (2 mmol) of 37, 200 mL of 2M dimethylamine in methanol, 200 mL of acetonitrile, and 1 mL of acetic acid at 25° C. was added 2.60 g (40 mmol) of sodium cyanoborohydride, and the reaction mixture was stirred at 25° C. for 20 h. The mixture was diluted with 200 mL of water and then acidified (pH<2) employing conc. hydrochloric acid. After 30 min. gas evolution had ceased, and the solution was made strongly basic (pH>12) employing conc. aqueous sodium hydroxide solution. The solution was stirred for 20 min. and then was adjusted to pH 10 by the addition of 1N hydrochloric acid. The resulting precipitate was recovered by filtration, washed with water, and dried. These solids were dissolved in 10 mL of trifluoroacetic acid, and the solution was diluted with 50 mL of anhydrous ethanol. A yellow precipitate formed, was recovered by filtration, and was dried under vacuum to provide 0.41 g of the product as its TFA-salt. mp 258° C.; ESI-MS m/e calc'd for C
[0898] Prepared in a similar fashion as described for example CCXLVIII employing 37, morpholine, and methanesulfonic acid as the starting materials. mp 249° C. (MSOH salt); ESI-MS m/e calc'd for C
[0899] Prepared in a similar fashion as described for example CCXLVIII employing 37 and piperidine as the starting materials. mp 233° C. (TFA salt); ESI-MS m/e calc'd for C
[0900] Prepared in a similar fashion as described for example CCXLVIII employing 37 and pyrrolidine as the starting materials. mp 247° C. (TFA salt); ESI-MS m/e calc'd for C
[0901] Prepared in a similar fashion as described for example CCXLVIII employing 37 and diethylamine as the starting materials. mp 251° C. (TFA salt); ESI-MS m/e calc'd for C
[0902]
[0903] Step 1. Synthesis of 38 from 35.
[0904] A mixture of 4.43 g (7.7 mmol) of 35 (example CCX), 3.15 g (20.7 mnmol) of 4-methoxybenzylhydrazine, 0.29 g (1.50 mmol) of 4-methoxybenzylhydrazine hydrochloride, and 150 mL of ethanol was refluxed for 22 h. While the reaction mixture was maintained at reflux 30 mL of water was added dropwise, and the mixture then was allowed to cool to room temperature. The resulting precipitate was recovered by filtration, washed with 95% aqueous ethanol, and dried to furnish 1.40 g of 38. NMR (CDCl
[0905] Step 2. Synthesis of 39 from 38.
[0906] A solution of 1.38 g of 38 in 20 mL of trifluoroacetic acid was stirred at 25° C. for 0.5 h. The excess trifluoroacetic acid was removed under vacuum, and the residue was recyrstallized from ethanol to afford 1.25 g of 39 as its TFA-salt. ESI-MS m/e=594 (M+H)
[0907] Step 3. Synthesis of 40 from 39.
[0908] A solution of 0.18 g (0.25 mmol) of 39, 0.27 g (2.5 mmol) of methyl acetimidate hydrochloride, 0.31 g (2.5 mmol) of 4-dimethylaminopyridine, and 10 mL of methanol was refluxed for 48 h. To the hot solution was added 2 mL of water, and the miture was allowed to cool to room temperature. The resulting precipitate was washed with 95% aqueous ethanol and dried to provide 0.125 g of 40 as an orange solid.
[0909] Step 4. Synthesis of CCLIII from 40.
[0910] A solution of 0.122 g of 40 in 10 mL of trifluoroacetic acid was stirred at 25° C. for 120 h and then concentrated under vacuum. The residue was purified by reverse-phase preparative HPLC to afford 0.045 g of CCLIII as its TFA-salt. mp 240° C.; ESI-MS m/e calc'd for C
[0911] Prepared in a similar fashion as described for example CCLIII employing 39 and 2-bromopyridine as the starting materials. ESI-MS m/e calc'd for C
[0912] Prepared in a similar fashion as described for example XXIII using isonipecotamide and the c-propyl analog of 14 as the starting materials. mp 178-180° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0913] Prepared in a similar fashion as described for example XLII using 1-amino-4-methylpiperazine and the ethyl analog of 15 as the starting materials. mp 244-246° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0914] Prepared in a similar fashion as described for example XLII using 1-amino-4-methylpiperazine and the c-propyl analog of 15 as the starting materials. mp 215-217° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0915] Prepared in a similar fashion as described for example XLII using 1-amino-4-methylpiperazine and the c-hexyl analog of 15 as the starting materials. mp 241-242° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0916] Prepared in a similar fashion as described for example XLII using 4-aminomorpholine and the ethyl analog of 15 as the starting materials. mp 253-254° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0917] Prepared in a similar fashion as described for example XLII using 4-aminomorpholine and the c-propyl analog of 15 as the starting materials. ESI-MS (M+H) calc'd for C
[0918] Prepared in a similar fashion as described for example XLII using 4-aminomorpholine and the c-hexyl analog of 15 as the starting materials. mp >260° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0919] Prepared in a similar fashion as described for example CXXVI using ethylchloroformate and 29G as the starting materials. mp 206-207° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0920] Prepared in a similar fashion as described for example CXXVI using phenylchloroformate and 29G as the starting materials. mp 250-252° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0921]
[0922] A solution of 29G (0.255 g, 0.5 mmol) in dimethylformamide (10 mL) was treated with carbonyldiimidazole (0.16 g, 1 mmol) and stirred at 50° C. for 2 h. The reaction mixture was cooled, poured into water (20 mL), and extracted with EtOAc (40 mL). The organic layer was separated, dried (MgSO
[0923] Prepared in a similar fashion as described for example CXXXII using 29G and 2-thiophenecarboxylic acid as the starting materials. mp 218-220° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0924]
[0925] Step 1. Synthesis of 29H from 29G
[0926] Prepared in a similar fashion as described for example CXXVI using 29G and 4-nitrophenylchloroformate as the starting materials to give the product as a tan solid (1.22 g, 72%). mp 255-257° C.; ESI-MS (M+H) calc'd for C
[0927] Step 2. Synthesis of CCLXVI from 29H.
[0928] A suspension of 29H (0.20 g, 0.36 mmol) in dimethylsulfoxide (1 mL) was treated with conc. NH
[0929] Prepared in a similar fashion as described for example CCLXVI using 29H and ethylamine as the starting materials. mp 215-216° C. (TFA salt); ESI-MS (M−H) calc'd for C
[0930] Prepared in a similar fashion as described for example CCLXVI using 29H and 2-(2-aminoethyl)-1-methylpyrrolidine as the starting materials. mp 91-93° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0931] Prepared in a similar fashion as described for example CCLXVI using 29H and 4-(dimethylamino)piperidine as the starting materials. mp 172-174° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0932] Prepared in a similar fashion as described for example CXXVI, step 7, using CCLXXI as the starting material. mp 195-197° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0933] Prepared in a similar fashion as described for example CCLXVI using 29H and 1-(t-butoxycarbonyl)piperazine as the starting materials. mp 231-232° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0934] Prepared in a similar fashion as described for example CXXVI, step 7, using the 3-(1-((5-t-butoxycarbonyl-(1S,4S)-(+)-2,5-diazabicyclo[2.2.1
]hept-2-yl)carbonyl)piperidin-4-yl)-5-(morpholinocarbamoylam
ino)indeno[1,2-c]pyrazol-4-one as the starting material. mp 196-198° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0935] Prepared in a similar fashion as described for example CCLXVI using 29H and (1S,4S)-(+)-2-methyl-2,5-diazabicyclo[2.2.1]heptane as the starting materials. mp 224-225° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0936] Prepared in a similar fashion as described for example CXXVI, step 7, using CCLXXVI as the starting material. mp 172-174° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0937] Prepared in a similar fashion as described for example CXXXII using 29G and 4-(dimethylamino)butyric acid as the starting materials. mp 145-147° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0938] Prepared in a similar fashion as described for example CXXXII using 29G and 5-(t-butoxycarbonylamino)butyric acid as the starting materials. mp 73-75° C.; ESI-MS (M+H) calc'd for C
[0939] Prepared in a similar fashion as described for example CXXVI, step 7, using CCLXXIX as the starting material. mp 103-105° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0940] Prepared in a similar fashion as described for example CXXXII using 29G and 5-(dimethylamino)valeric acid as the starting materials. mp 68-70° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0941] Prepared in a similar fashion as described for example CXXXII using 29G and 5-(t-butoxycarbonylamino)valeric acid as the starting material. mp 98-99° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0942] Prepared in a similar fashion as described for example CXXXII using 29G and 1-methylpiperidine-4-carboxylic acid as the starting materials. mp 148-150° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0943] Prepared in a similar fashion as described for example CXXXII using 29G and 1-(t-butoxycarbonyl)piperidine-4-carboxylic acid as the starting materials. mp 220-222° C.; ESI-MS (M+H) calc'd for C
[0944] Prepared in a similar fashion as described for example CXXVI, step 7, using CCLXXXV as the starting material. mp 212-214° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0945] Prepared in a similar fashion as described for example CXXVI, step 7, using CCLXXXVI as the starting material. mp 202-204° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0946] Prepared in a similar fashion as described for example CXXXII using 29G and 4-(dimethylamino)cyclohexane carboxylic acid as the starting materials. mp 123-125° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0947] Prepared in a similar fashion as described for example CXXXII using 29G and 4-(t-butoxycarbonylamino)cyclohexane carboxylic acid as the starting materials. mp 210-212° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0948] Prepared in a similar fashion as described for example CXXXII using 29G and 4-(t-butoxycarbonylamino)cyclohexane carboxylic acid as the starting materials. mp 178-180° C.; ESI-MS (M+H) calc'd for C
[0949] Prepared in a similar fashion as described for example CXXVI, step 7, using CCLXXXIX as the starting material. mp 169-170° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0950] Prepared in a similar fashion as described for example CXXXII using 29G and 1-methylpiperidine-3-carboxylic acid as the starting materials. mp 158-160° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0951] Prepared in a similar fashion as described for example CXXXII using 29G and 1-t-butoxycarbonylpiperidine-3-carboxylic acid as the starting materials. mp 196-198° C.; ESI-MS (M+H) calc'd for C
[0952] Prepared in a similar fashion as described for example CXXVI, step 7, using 3-(1-(3-t-butoxycarbonylamino)cyclohexylcarbonyl)piperidin-4
-yl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one as the starting material. mp 201-203° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0953] Prepared in a similar fashion as described for example CXXXII using 29G and 1-(dimethylamino)cyclohexane-3-carboxylic acid as the starting materials. mp 153-155° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0954] Prepared in a similar fashion as described for example CXXXII using 29G and 4-trans-methoxycyclohexane carboxylic acid as the starting materials. mp 246-248° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0955] Prepared in a similar fashion as described for example CXXXII using 29G and 4-cis-methoxycyclohexane carboxylic acid as the starting materials. mp 178-180° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0956] Prepared in a similar fashion as described for example CXXVI, step 7, using CCXCVI as the starting material. mp 177-179° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0957] Prepared in a similar fashion as described for example CXXXII using 29G and 4-(dimethylamino)phenyl acetic acid as the starting materials. mp 107-109° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0958] Prepared in a similar fashion as described for example CXXXII using 29G and 4-(t-butoxycarbonylamino)phenyl acetic acid as the starting materials. mp 177-178° C.; ESI-MS (M+H) calc'd for C
[0959] Prepared in a similar fashion as described for example CXXVI, step 7, using CCXCIX as the starting material. mp 198-200° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0960] Prepared in a similar fashion as described for example CXXXIII using 29G and 4-(dimethylamino)benzoic acid as the starting materials. mp 189-191° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0961] Prepared in a similar fashion as described for example CXXXIII using 29G and 4-(t-butoxycarbonylamino)benzoic acid as the starting materials. mp 212-214° C.; ESI-MS (M+H) calc'd for C
[0962] Prepared in a similar fashion as described for example CXXIII using CCCI as the starting material. mp 264-266° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0963] Prepared in a similar fashion as described for example XLII using 4-aminomorpholine and the trans-4-(methoxycarbonyl)cyclohexyl analog of 15 as the starting materials. mp 259-261° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0964] Prepared in a similar fashion as described for example CXXXII using 3-(dimethylamino)pyrrolidine and acid CCC as the starting materials. mp 191-193° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0965] Prepared in a similar fashion as described for exampleCXXVI, step 7, using 3-(trans-4-(4-(t-butoxycarbonyl)piperazinocarbonyl)cyclohexy
l)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-one as the starting material. mp 247-248° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0966] Prepared in a similar fashion as described for example CXXXII using 1-methylpiperazine and CCC as the starting materials. mp 228-230° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0967] Prepared in a similar fashion as described for example CXXVI, step 7, using 3-(trans-4-(4-(t-butoxycarbonyl)homopiperazinocarbonyl)cyclo
hexyl)-5-(morpholinocarbamoylamino)indeno[1,2-c]pyrazol-4-on
e as the starting material. mp >265° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0968] Prepared in a similar fashion as described for example CXXXIII using 1-methylhomopiperazine and CCC as the starting materials. mp 218-220° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0969]
[0970] Step 1. Synthesis of Nitrotriketone 4a from 1a.
[0971] Ethyl trifluoroacetate (22.9 g, 161 mmol) and 2,4-dimethyl-5-acetylthiazole (25.0 g, 161 mmol) were added to a solution sodium ethoxide, freshly prepared from sodium (3.71 g, 161 mmol) and ethanol (500 mL), and stirred at 23° C. for 12 h. Half of the volume of organic solvent was concentrated in vacuo and the reaction mixture was diluted with 6 M HCl (400 mL) and extracted with ethyl acetate (2×300 mL). The combined organic extracts were washed with brine (2×300 mL), dried (MgSO
[0972] 3-Nitrophthalic anhydride (31.1 g, 161 mmol) was added to a solution of diketone 2a in acetic anhydride (91.2 mL, 968 mmol). The reaction mixture was cooled to 0° C. and triethylamine (67.3 mL, 484 mmol) was added dropwise over 1 h. The reaction mixture was warmed to 23° C. and stirred for 12 h, heated to 50° C. for 30 min, and then cooled to 23° C. The reaction mixture was slowly poured into 1 M HCl (484 mL, diluted with 1 L of water). The solid which precipitated was filtered and washed repeatedly with water (3×150 mL) to give a brown solid (24.4 g, 46%, 2 steps). ESI-MS (M−H) found for C
[0973] Step 2. Synthesis of Aniline 5a from 4a.
[0974] A solution of nitrotriketone 4a (24.4 g, 73.9 mmol), zinc powder (160 g, 2.4 mol), and calcium chloride (5.3 g, 48 mmol) in 4:1 ethanol/water (370 mL) was heated to reflux for 1 h. The reaction mixture was filtered over celite and washed with methanol (3×150 mL) and ethyl acetate (3×150 mL). The filtrate was concentrated in vacuo to give a crude brown solid. Purification by flash column chromatography (silica, chloroform→2% methanol/chloroform→5% methanol/chloroform→7% methanol/chloroform) gave aniline 5a (13.0 g, 59%) as a brown solid. ESI-MS (M−H) found for C
[0975] Step 3. Synthesis of Carbamate 6a from 5a.
[0976] A solution of aniline 5a (840 mg, 2.8 mmol), phenyl chloroformate (0.42 mL, 3.4 mmol), and sodium carbonate (1.6 g) in acetone (14 mL) was heated to 50° C. for 4 h. The reaction mixture was cooled to 23° C. and diluted with water (20 mL) and ethyl acetate (20 mL). The organic layer was separated and washed with brine (20 mL), dried (MgSO
[0977] Step 4. Synthesis of Urea 15a from 6a.
[0978] A solution of carbamate 6a (1.18 g, 2.8 mmol) and ammonium hydroxide (0.47 mL, 3.4 mmol) in N,N-dimethylformamide (5 mL) was heated to 90° C. for 1 h. The solvent was concentrated in vacuo to give a crude residue. Purification using reverse phase HPLC (acetonitrile/water/trifluoroacetic acid) gave the product as a yellow solid (117 mg, 12%). ESI-MS (M−H) found for C
[0979] Step 5. Synthesis of Pyrazole 16a from 15a.
[0980] A solution of urea 15a (117 mg, 0.34 mmol), hydrazine (21 μL, 0.68 mmol), and p-toluenesulfonic acid (3.2 mg, 17 μmol) in ethanol (1.7 mL) was refluxed for 4 h. The reaction mixture was cooled to 23° C. and concentrated in vacuo to give a crude residue. Purification using reverse phase HPLC (acetonitrile/water/trifluoroacetic acid) gave the product as its TFA-salt (10 mg, 9%). ESI-MS (M+H) calc'd for C
[0981]
[0982] Prepared in a similar fashion as described for example CCCVII using 6a and morpholine as the starting materials. mp >300° C. (TFA salt); ESI-MS (M+H) calc'd for C
[0983]
[0984] Step 1. Synthesis of Acetamide 8a from 5a.
[0985] A solution of aniline 5a (3.3 g, 10.8 mmol) in N,N-dimethylformamide (54 mL) was treated with acetyl chloride (0.81 mL, 11.4 mmol) and triethylamine (1.7 mL, 11.9 mmol) and refluxed for 4 h. The reaction mixture was cooled to 23° C. and diluted with ethyl acetate (100 mL) and water (100 mL). The aqueous layer was separated and washed with ethyl acetate (100 mL). The combined organic extracts were washed with brine (100 mL), dried (MgSO
[0986] Step 2. Synthesis of pyrazole 9a from 8a.
[0987] A solution of triketone 8a (1.6 g, 4.7 mmol), hydrazine (0.71 mL, 9.4 mmol), and p-toluenesulfonic acid (44 mg, 0.23 mmol) in ethanol (23 mL) was refluxed for 4 h. The reaction mixture was cooled to 23° C. and the solid was filtered and washed with ethanol (20 mL) and ether (20 mL). Recrystalization of the precipatate from ethanol gave the product as a brown solid (400 mg, 25%). ESI-MS (M—H) found for C
[0988] Step 3. Synthesis of aniline 10a from 9a.
[0989] A solution of pyrazole 9a (400 mg, 1.2 mmol) and concentrated hydrochloric acid (2 mL) in methanol was refluxed for 3 h. The reaction mixture was cooled to 23° C. and concentrated in vacuo to give the product as a yellow solid (350 mg, 99%). ESI-MS (M−H) found for C
[0990] Step 4. Synthesis of aniline 11a from 10a.
[0991] A solution of aniline 10a (350 mg, 1.2 mmol) in dioxane (6 mL) was treated with triethylamine (0.69 mL, 5 mmol) and 2-(trimethylsilyl)ethoxymethyl chloride (0.52 mL, 3 mmol) and heated to reflux for 3 h. The reaction mixture was cooled to 23° C. and diluted with EtOAc (20 mL) and water (20 mL). The aqueous layer was separated and extracted with ethyl acetate (20 mL). The combined organic extracts were washed with brine (20 mL), dried (MgSO
[0992] Step 5. Synthesis of carbamate 12a from 11a.
[0993] Prepared in a similar fashion as described for example 1, step 3, using aniline 11a as the starting material. ESI-MS (M+H) found for C
[0994] Step 6. Synthesis of pyrazole 17a from 12a.
[0995] A solution of carbamate 12a (167 mg, 0.3 mmol) and 1-methyl-1-phenylhydrazine (72 μL, 0.6 mmol) in dimethyl sulfoxide (2 mL) was heated to 90° C. for 1 h. The solvent was concentrated in vacuo to give a crude residue which was diluted with 1:1 acetonitrile/water (3 mL). The solid which precipitated was filtered to give the product as a yellow solid (110 mg, 63%). ESI-MS (M+H) found for C
[0996] Step 7. Synthesis of pyrazole 18a from 17a.
[0997] A solution of 17a (110 mg, 0.2 mmol) in ethanol (10 mL) was treated with 4M hydrochloric acid in dioxane (10 mL) and heated to 70° C. for 1 h. The reaction mixture was cooled to 23° C. and the solid which precipitated was filtered to give the product as its HCl-salt (50 mg, 59%). mp=250° C.; ESI-MS (M+H) calc'd for C
[0998]
[0999] Prepared in a similar fashion as described for example 3 using 12a and 1-amino-2,6-dimethylpiperidine as the starting materials. ESI-MS (M+H) found for C
[1000]
[1001] Step 1. Synthesis of semicarbazide 19a from aniline 5a.
[1002] A solution of aniline 5a (13.0 g, 43.3 mmol), N-(4-methylpiperazinyl)-O-(phenyl)carbamate (20.4 g, 86.7 mmol), and triethylamine (18.1 mL, 130 mmol) in dimethylsulfoxide (217 mL) was heated to 90° C. for 1 h. The reaction mixture was cooled to 23° C. and diluted with water (500 mL). The solid which precipitated was collected and washed with water (300 mL), ethanol (300 mL), and ether (300 mL) and dried to give a brown solid (15.6 g, 82%). ESI-MS (M+H) calc'd for C
[1003] Step 2. Synthesis of pyrazole 20a from semicarbazide 19a.
[1004] A solution of semicarbazide 19a (15.6 g, 35.3 mmol), hydrazine (6.7 mL, 212 mmol), and acetic acid (4.0 mL, 71 mmol) was refluxed in ethanol (354 mL) for 84 h. The reaction mixture was cooled to 23° C., filtered, washed with ethanol (300 mL) and ether (300 mL), and dried to give a yellow solid which was dissolved in 10% acetic acid in water (20 mL). The solution was adjusted to pH=7 with 10% sodium hydroxide. The solid which precipitated was filtered and dried to give the free base (6.8 g, 29%) as a yellow solid. The free base was dissolved in 1M hydrochloric acid (31 mL) and the water was removed with a lyophilizer to give the product as a light brown powder (7.9 g, 99% from the free base). mp=278° C.; ESI-MS (M+H) calc'd for C
[1005] The compounds in the following tables are produced by suitabl methods from among the methods of the above examples.
TABLE 1
Example mass mp # R R (M + H) (° C.) I Methyl 4-MeOC 334 268 II ClCH 4-MeOC 382 274 III cyclopropyl 4-MeOC 360 289 IV isopropyl 4-MeOC 362 288 V ethyl 4-MeOC 348 287 VI cyclopentyl 4-MeOC 388 267 VII cyclobutyl 4-MeOC 374 297 VIII benzyl 4-MeOC 410 280 IX n-propyl 4-MeOC 362 282 X 4-ClC 4-MeOC 444 238 XI 3-MeOC 4-MeOC 440 >300 XII 4-MeOC 4-MeOC 440 280 XIII 3,4-diMeOC 4-MeOC 470 >300 XIV 2,5-diMeOC 4-MeOC 470 226 XV Methyl 2-MeOC 334 276 XVI Methyl 3,4-diMeOC 364 >300 XVII 3,4-(OCH 4-MeOC 454 297 XVIII 3-thiophenylCH 4-MeOC 416 293 XIX 2-MeOC 4-MeOC 440 255 XX 3,4-diClOC 4-MeOC 479 299 XXI 2,4-diClOC 4-MeOC 479 286 XXII 2-ClC 4-MeOC 444 300 XXIII H 4-MeOC 349 >300 XXIV HOCH 4-MeOC 393 243 XXV Me 4-MeOC 377 279 XXVI PiperazinoCH 4-MeOC 418 277 XXVII 4-Me-piperazinoCH 4-MeOC 432 >300 XXVIII 4-HOCH 4-MeOC 462 >300 XXIX piperisinoCH 4-MeOC 417 291 XXX 4-NH 4-MeOC 446 >300 XXXI CH 4-MeOC 377 250 XXXII thiomorpholinoCH 4-MeOC 435 298 XXXIII morpholinoCH 4-MeOC 419 295 XXXIV pyrrolidinoCH 4-MeOC 403 279 XXXV 4-pyridylCH 4-MeOC 440 >300 XXXVI 4-CH 4-MeOC 467 268 XXXVII 4-CH 4-MeOC 483 257 XXXVIII 4-NH 4-MeOC 482 228 XXXIX 4-Me 4-MeOC 510 >300 XL 4-N 4-MeOC 451 >300 XLI 4-NH 4-MeOC 425 283 XLII C 4-MeOC 411 >300 XLIII CH 4-MeOC 377 252 XLIV 4-NH 4-MeOC 440 >300 XLV 4-pyridylCH 4-MeOC 426 >300 XLVI Methyl 4-HOC 320 >300 XLVII H 4-MeOC 320 280 XLVII Methyl 3-pyridyl 305 >300 XLIX Methyl 4-pyridyl 305 >300 L H 4-pyridyl 291 >300 LI Methyl C 305 >300 LII Methyl 4-MeSC 351 283 LIII Methyl 4-MeSO 383 >300 LVI Methyl 4-Me 348 >300 LV morpholinoCH 4-Me 432 >300 LVI Me 4-Me 390 >300 LVII Methyl 4-(piperidino)C 388 291 LVIII Methyl 4-(morpholino)C 389 >300 LIX Methyl 4-CH 349 288 LX Methyl 4-CH 361 259 LXI Methyl 4-CH 332 294 LXII Methyl 4-CH 347 269 LXIII NH 4-MeOC 335 >300 LXIV Me 4-MeOC 378 >300 LXV MeNH 4-MeOC 349 >300 LXVI morpholinoNH 4-MeOC 420 >300 LXVII cis-1,2- 4-MeOC 432 >300 diaminocyclohexanyl LXVIII 4-methylpiperazinoNH 4-MeOC 433 >300 LXVIX 4-uridomethylpiperidino- 4-MeOC 489 >300 CH LXX 4-(2-pyridyl)piperazinol- 4-MeOC 495 >300 CH LXXI 4- 4-MeOC 461 >300 (aminoethyl)piperazinoCH LXXII 4-carbamoylpiperidinoCH 4-MeOC 460 >300 LXXIII 4-hydroxypiperidinoCH 4-MeOC 433 >300 LXXIV 4- 4-MeOC 447 >300 hydroxymethylpiperidino- CH LXXV 4-amidopiperazinoCH 4-MeOC 493 >300 LXXVI 4- 4-MeOC 492 >300 dimethylaminopiperidino- CH LXXVII 4-aminopiperidinoCH 4-MeOC 464 >300 LXXVIII 4-Me-piperazinoCH 4-Me 445 >300 LXXIX 4-NH 4-Me 459 NA LXXX 4-OH-piperidinoCH 4-Me 446 267 LXXXI morpholinoCH 4-(morpholino)C 474 258 LXXXII 4-Me-piperazinoCH 4-(morpholino)C 487 258 LXXXIII 4-OH-pipieridinoCH 4-(morpholino)C 488 245 LXXXIV 4-NH 4-(morpholino)C 501 240 LXXXV 4-Me-piperazinoNH 4-Me 446 >300 LXXXVI 4-Me-piperazinoNH(X = S) 4-MeOC 449 >300 LXXXVII Methyl c-propyl 268 220 LXXXVIII NH 1-Me-3-pyridyl 308 >300 LXXXIX Methyl 2-thienyl 310 269 XC Methyl 3-Me-2-thienyl 324 275 XCI NH Ethyl 257 >250 XCII NH n-propyl 271 187 XCIII NH i-propyl 271 >250 XCIV NH c-propyl 267 252 (M − H) XCV NH c-hexyl 311 178 XCVI NH 2-thienyl 310 214 (M XCVII NH 3-Me-2-thienyl 325 270 XCVIII NH 5-Me-2-thienyl 325 >280 XCIX NH 5-CO 383 >280 C NH 3-thienyl 311 >280 CI NH 5-Cl-3-thienyl 345 >300 CII NH 2,5-diMe-3-thienyl 339 >280 CIII NH 2-furanyl 295 278 CIV Me i-propyl 314 231 CV Me c-propyl 312 NA CVI Me c-hexyl 354 229 CVII Me 2-thienyl 354 279 CVIII Me 5-MeO-2-thienyl 384 280 CIX Me 5-Me-2-thienyl 368 >280 CX Me 5-CO 426 252 CXI Me 3-thienyl 354 202 CXII NH 1-methyl-3-pyrrolyl 308 >300 CXIII Me 2,5-diMe-3-thienyl 382 252 CXIV Me 2-furanyl 338 202 CXV 4-NH i-propyl 396 224 CXVI 4-NH c-hexyl 436 228 CXVII 4-NH ethyl 368 174 CXVIII 4-NH i-propyl 382 218 CXVIX 4-NH c-propyl 380 138 CXX 4-NH c-hexyl 422 196 CXXI 4-CH i-propyl 369 231 CXXII 4-CH 5-CO 481 249 CXXIII 4-CH 5-CO 453 270 CXXIV 4-CH 2,5-diMe-3-thienyl 437 250 CXXV morpholinoNH i-propyl 354 256 (M − H) CXXVI morpholinoNH 1-CO 455 216 CXXVII morpholinoNH 5-Me-2-thienyl 410 261 CXXVIII morpholinoNH 5-Cl-3-thienyl 430 259 CXXIX morpholinoNH 2,5-diMe-3-thienyl 424 >280 CXXX morpholinoNH 5-CO 468 258 CXXXI morpholinoNH 5-CO 440 273 CXXXII morpholinoNH 5-CONHBn-2-thienyl 529 275 CXXXIII morpholinoNH 5-CO(4-Me-piperazino)- 537 190 2-thienyl CXXXIV morpholinoNH 5-CONHCH 550 235 pyrrolidinyl)-2-thienyl CXXXV morpholinoNH 5-CONHNMe 482 201 CXXXVI morpholinoNH 5-CONHCH 510 190 thienyl CXXXVII morpholinoNH 5- 536 224 CONHCH 2-thienyl CXXXVIII morpholinoNH 5- 552 241 CONHCH 2-thienyl CXXXIX morpholinoNH 5-CONH(morpholino)-2- 524 271 thienyl CXL morpholinoNH 5-CONHCH 564 260 pyrrolidonyl)-2-thienyl CXLI morpholinoNH 5-CONHCH 544 203 pyridyl)-2-thienyl CXLII morpholinoNH 5-CONHCH 547 263 imidazolyl)-2-thienyl CXLIII morpholinoNH 5-CONHCH 544 >280 pyridyl)-2-thienyl CXLIV morpholinoNH 5-CONHCH 530 239 thienyl CXLV morpholinoNH 5-CONHCH 550 228 idino)-2-thienyl CXLVI morpholinoNH 5-pyrrolidino- 508 213* aminocarbonyl-2-thienyl CXLVII morpholinoNH 5-piperidino- 522 189* aminocarbonyl-2-thienyl CXLVIII morpholinoNH 5-piperidino-carbonyl- 507 N/A 2-thienyl CXLIX morpholinoNH 5-piperazino-carbonyl- 508 241* 2-thienyl CL morpholinoNH 5-(4-Me- 522 186* piperazino)carbonyl-2- thienyl CLI morpholinoNH 5-(4-Et- 536 186* piperazino)carbonyl-2- thienyl CLII morpholinoNH 5-((4-CH 552 186* piperazino)carbonyl-2- thienyl CLIII morpholinoNH 5-(4-cyclopropylmethyl- 562 211* piperazino)carbonyl-2- thienyl CLIV morpholinoNH 5-(4-t-CO 608 225* piperazino)carbonyl-2- thienyl CLV morpholinoNH 5-(4-(2-pyridyl)- 585 202* piperazino)carbonyl-2- thienyl CLVI morpholinoNH 5-(1S,4S)-2,5- 520 >300* diazobicyclo[2.2.1]hept- yl)carbonyl-2-thienyl CLVII morpholinoNH 5-((1S,4S)-2-Me-2,5- 534 244* dizaobicyclo[2.2.1]hept- yl)carbonyl-2-thienyl CLVIII morpholinoNH 5-(4-NMe 550 185* piperidino)carbonyl-2- thienyl CLIX morpholinoNH 5-(4-pyrrolidino- 576 228* piperidino)carbonyl-2- thienyl CLX morpholinoNH 5-(4-piperidino- 590 N/A piperidino)carbonyl-2- thienyl CLXI morpholinoNH 5-(cyclohexyl- 521 264* aminocarbonyl)-2-thienyl CLXII morpholinoNH 5-(4-piperidyl- 522 224* aminocarbonyl)-2-thienyl CLXIII morpholinoNH 5-((1-CO 620 229* piperidyl)amino- carbonyl)-2-thienyl CLXIV morpholinoNH 5-(N-(1-Me-4- 550 230* piperidyl)-N-methyl- aminocarbonyl)-2- thienyl CLXV morpholinoNH 5-(3-NMe 550 >300* piperidinocarbonyl)-2- thienyl CLXVI morpholinoNH 5-(3-(p- 676 193* toluenesulfonyl- amino)piperidino- carbonyl)-2-thienyl CLXVII morpholinoNH 5-(3-OH-piperidino- 523 N/A carbonyl)-2-thienyl CLXVIII morpholinoNH 5-((3-piperidyl)- 522 >300* aminocarbonyl)-2- thienyl CLXIX morpholinoNH 5-((3-quinuclidyl)- 548 245* aminocarbonyl)-2- thienyl CLXX morpholinoNH 5-(3-(aminocyclohexyl)- 536 >300* aminocarbonyl)-2- thienyl CLXXI morpholinoNH 5-(3-(t-butoxy- 636 >300* carbonylaminocyclo- hexyl)aminocarbonyl)-2- thienyl CLXXII morpholinoNH 5-(2-(Me 564 >300* piperidinocarbonyl)-2- thienyl CLXXIII morpholinoNH 5-(2-Et 592 210* piperidinocarbonyl)-2- thienyl CLXXIV morpholinoNH 5-pyrrolidino- 493 >300* carbonyl)-2-thienyl CLXXV morpholinoNH 5-(3-NH 508 201* pyrrolidinocarbonyl)-2- thienyl CLXXVI morpholinoNH 5-(3(S)- 522 N/A (NHMe)pyrrolidino- carbonyl)-2-thienyl CLXXVII morpholinoNH 5-(3(S)-(NHCOCH 550 264* pyrrolidinocarbonyl)-2- thienyl CLXXVIII morpholinoNH 5-(3(S)-(N(Me)COCH 564 >300* pyrrolidinocarbonyl)-2- thienyl CLXXIX morpholinoNH 5-(3(S)-(N(Me)CO 622 >300* Bu)pyrrolidino- carbonyl)-2-thienyl CLXXX morpholinoNH 5-(3-NMe 536 216* pyrrolidinocarbonyl)-2- thienyl CLXXXI morpholinoNH 5-(3(R)-(NMe 536 265* pyrrolidinocarbonyl)-2- thienyl CLXXXII morpholinoNH 5-(3(S)-(NMe 536 264* pyrrolidinocarbonyl)-2- thienyl CLXXXIII morpholinoNH 5-((1-Me-3- 536 151* pyrrolidinyl)methylamino- carbonyl)-2-thienyl CLXXXIV morpholinoNH 5-(2(R)- 576 166* (pyrrolidinomethyl)pyrro- lidino-carbonyl)-2- thienyl CLXXXV morpholinoNH 5-(2(S)- 523 267* (CH carbonyl)-2-thienyl CLXXXVI morpholinoNH 5-(2(R)-(CH 537 262* pyrrolidinocarbonyl)-2- thienyl CLXXXVII morpholinoNH 5-(2(S)- 598 >300* (phenylaminomethyl)- pyrrolidinocarbonyl)-2- thienyl CLXXXVIII morpholinoNH 5-(2(R)-(CH 552 266* pyrrolidinoamino- carbonyl)-2-thienyl CLXXXIX morpholinoNH 5-homopiperidino- 521 N/A carbonyl-2-thienyl CXC morpholinoNH 5-homopiperazino- 522 209* carbonyl-2-thienyl CXCI morpholinoNH 5-(4-Me-homopiperazino- 536 207* carbonyl)-2-thienyl CXCII morpholinoNH 5-(4-Et-homopiperazino- 550 192* carbonyl)-2-thienyl CXCIII morpholinoNH 5-((4- 576 194* (cyclohexylmethyl)- homopiperazino)- carbonyl)-2-thienyl CXCIV morpholinoNH 5-(4-(CO 622 210* homopiperazino- carbonyl)-2-thienyl CXCV morpholinoNH 5-(4-(COCH 564 274* homopiperazino- carbonyl)-2-thienyl CXCVI morpholinoNH 5-((4-methylamino- 544 230* phenyl)aminocarbonyl)- 2-thienyl CXCVII morpholinoNH 5-((4-acetamidophenyl)- 572 253* aminocarbonyl)-2- thienyl CXCVIII morpholinoNH 5-(4-(NEt 586 198* phenylaminocarbonyl)-2- thienyl CXCIX morpholinoNH 5-(1-Me-3-cyclopropyl- 559 290* 5-pyrazolyl)amino- carbonyl-1-thienyl CC morpholinoNH 1-Me-3-pyrrolyl 393 301 CCI 2(R)-(CH 5-CO 496 221 pyrrolidinoNH CCII 2(R)-(CH 5-CO 468 258* pyrrolidinoNH CCIII 2(R)-(CH 5-(4-Me-piperazino- 550 181* pyrrolidinoNH carbonyl)-2-thienyl CCIV 2(R)-(CH 5-piperazino-carbonyl- 536 >300* pyrroldinoNH 2-thienyl CCV 2(R)-(CH 5-(4-(CO 636 >300* pyrrolidinoNH piperazinocarbonyl)-2- thienyl CCVI 2(R)-(CH 5-(4-Me-homopiperazino- 564 176* pyrrolidinoNH carbonyl)-2-thienyl CCVII 2(R)-(CH 5-homopiperazino- 550 185* pyrrolidinoNH carbonyl-2-thienyl CCVIII 2(R)-(CH 5-(4-(CO 650 >300* pyrrolidinoNH homopiperazino- carbonyl)-2-thienyl CCIX Methyl 4-CF 370 >300 (M − H) CCX morpholinoNH 4-(4-Boc- 574 242 piperazino)C CCXI morpholinoNH 4-(piperazino)C 474 263* CCXII NH 4-(piperazino)C 389 257* CCXIII NH 4-(piperazino)C 404 257* CCXIV Me 4-(piperazino)C 431 243* CCXV morpholinylCH 4-(piperazino)C 473 259* CCXVI 4-Me-piperazinoCH 4-(piperazino)C 486 NA CCXVII 4-NH 4-(piperazino)C 500 239* CCXVIII morpholinoNH 4-(4-Me-piperazino)C 488 245* CCXIX morpholinoNH 4-(4-Et-piperazino)C 502 245* CCXX morpholinoNH 4-(4-i-Pr- 516 253* piperazino)C CCXXI Me 4-(piperazino)C 432 238* CCXXII Me 4-(4-Me-piperazino)C 446 192* CCXXIII 4-CH 4-(piperazino)C 487 254* CCXXIV 4-CH 4-(4-Me-piperazino)C 501 293* CCXXV 4-CH 4-(4-Et-piperazino)C 515 NA CCXXVI 4-CH 4-(4-i-Pr- 529 272* piperazino)C CCXXVII 2,6-diCH 4-(piperazino)C 500 270* CCXXVIII 4-HOCH 4-(piperazino)C 517 279* CCXXIX 2(R)-CH 4-(piperazino)C 502 NA pyrrolidinoNH CCXXX 2(S)-CH 4-(piperazino)C 502 NA pyrrolidinoNH CCXXXI 2(R)-CH 4-(piperazino)C 530 221* pyrrolidinoNH CCXXXII 2(S)-CH 4-(piperazino)C 530 218* pyrrolidinoNH CCXXXIII 2(R)-HOCH 4-(piperazino)C 488 193* CCXXXIV 2(S)-HOCH 4-(piperazino)C 488 190* CCXXXV 2(R)-PhOCH 4-(piperazino)C 578 207* pyrrolidinoNH CCXXXVI 2(S)-PhOCH 4-(piperazino)C 578 NA pyrrolidinoNH CCXXXVII morpholinoNH 4-(3-Me-piperazino)C 488 230* CCXXXVIII morpholinoNH 4-(cis-3,5-diMe- 502 237* piperazino)C CCXXX morpholinoNH 4-(cis-3,4,5-triMe- 516 240* piperazino)C CCXXXI morpholinoNH 4-(4-i-Pr-piperazino)- 530 NA 2-Me—C CCXLI morpholinoNH 4-(homopiperazino)-C 488 253* CCXLII morpholinoNH 4-(4-Me- 502 NA homopiperazino)-C CCXLIII morpholinoNH 4-(4-Et- 516 240* homopiperazino)-C CCXLIV morpholinoNH 4-(4-i-Pr- 530 245* homopiperazino)-C CCXLV morpholinoNH 4-(homopiperazino)-2- 502 209* Me—C CCXLVI morpholinoNH 4-(4-Et- 530 217* homopiperazino)-2-Me- C CCXLVII morpholinoNH 4-(4-i-Pr- 544 197* homopiperazino)-2- Me—C CCXLVIII morpholinoNH 4-(4-Me 516 258* piperidino)C CCXLIX morpholinoNH 4-(4-morpholino- 558 249# piperidino)C CCL morpholinoNH 4-(4-piperidino- 556 233* piperidino)C CCLI morpholinoNH 4-(4-pyrrolidino- 542 247* piperidino)C CCLII morpholinoNH 4-(4-Et 544 251* piperidino)C CCLIII morpholinoNH 4-(4-C(═NH)CH 515 240* piperazino)C CCLIV morpholinoNH 4-(4-(2-pyridinyl)- 551 NA piperazino)C CCLV 4-NH c-propyl 394 178* CCLVI 4-CH ethyl 355 244* CCVLVII 4-CH c-propyl 367 215* CCLVIII 4-CH c-hexyl 409 241* CCLIX morpholinoNH ethyl 342 253* CCLX morpholinoNH c-propyl 354 N/A CCLXI morpholinoNH c-hexyl 396 >260* CCLXII morpholinoNH 1-CO 469 206* CCLXIII morpholinoNH 1-CO 517 250* CCLXIV morpholinoNH 1-Coimidazolyl- 491 202* piperidin-4-yl CCLXV morpholinoNH 1-(2- 507 218* thienylcarbonyl)piperidin- 4-yl CCLXVI morpholinoNH 1-CONH 440 258* CCLXVII morpholinoNH 1-CONHEt-piperidin-4-yl 466 215* CCLXVIII morpholinoNH 1-(2-(1-Me-pyrrolidin- 551 91* 2- yl)ethylaminocarbamoyl)- piperidin-4-yl CCLXIX morpholinoNH 1-(4-Nme 551 172* piperidinocarbonyl)- piperidin-4-yl CCLXX morpholinoNH 1-(piperazinocarbonyl)- 509 195* piperidin-4-yl CCLXXI morpholinoNH 1-(4-(CO 609 231 piperiazinocarbonyl)- piperidin-4-yl CCLXXII morpholinoNH 1-((1S,4S)-(+)-2,5- 521 196* diazabicyclo[2.2.1]hept- yl)carbonyl)-piperidin- 4-yl CCLXXIII morpholinoNH 1-((1S,4S)-(+)-2- 535 225* methyl-2,5- diazabicyclo[2.2.1]hept- yl)carbonyl)-pipieridin- 4-yl CCLXXIV morpholinoNH 1-(CO(CH 483 172* piperidin-4-yl CCLXXV morpholinoNH 1-(CO(CH 482 172* piperidin-4-yl CCLXXVI morpholinoNH 1-(CO(CH 582 73 piperidin-4-yl CCLXXVII morpholinoNH 1-(CO(CH 496 103* piperidin-4-yl CCLXXVIII morpholinoNH 1-(CO(CH 524 68* piperidin-4-yl CCLXXIX morpholinoNH 1-(CO(CH 596 98* piperidin-4-yl CCLXXX morpholinoNH 1-(1-e-piperidin-4- 522 148* ylcarbonyl)piperidin-4- yl CCLXXXI morpholinoNH 1-(1-CO 608 220 4-yl- carbonyl)piperidin-4-yl CCLXXXII morpholinoNH 1-(cis-4-NH 522 212* cyclohexylcarbonyl)piper- idin-4-yl CCLXXXIII morpholinoNH 1-(4-NH 522 202* cyclohexylcarbonyl)piper- idin-4-yl CCLXXXIV morpholinoNH 1-(cis-4-Nme 522 202* cyclohexylcarbonyl)piper- idin-4-yl CCLXXXV morpholinoNH 1-(4-NHCO 622 210* cyclohexylcarbonyl)piper- idin-4-yl CCLXXXVI morpholinoNH 1-(trans-4-(NHCO 622 178 Bu)cyclohexylcar- bonyl)piperidin-4-yl CCLXXXVII morpholinoNH 1-(piperidin-3- 508 169* ylcarbonyl)piperidin-4- yl CCLXXXVIII morpholinoNH 1-(1-Me-piperidin-3- 522 158* ylcarbonyl)piperidin-4- yl CCLXXXIX morpholinoNH 1-(1-CO 608 196 3-ylcarbonyl)piperidin- 4-yl CCXC morpholinoNH 1-(3-NH 522 201* cyclohexylcarbonyl)piper- idin-4-yl CCXCI morpholinoNH 1-(3-Nme 550 153* cyclohexylcarbonyl)piper- idin-4-yl CCXCII morpholinoNH 1-(trans-4-Ome- 537 246* cyclohexylcarbonyl)piper- idin-4-yl CCXCIII morpholinoNH 1-(cis-4-Ome- 537 178* cyclohexylcarbonyl)pipre- idin-4-yl CCXCIV morpholinoNH 1-(4-NH 530 177* benzylcarbonyl)piper- idin-4-yl CCXCV morpholinoNH 1-(4-Nme 558 107* benzylcarbonyl)piper- idin-4-yl CCXCVI morpholinoNH 1-(4-NHCO 630 177 benzylcarbonyl)piper- idin-4-yl CCXCVII morpholinoNH 1-(4-NH 516 198* phenylcarbonyl)piper- idin-4-yl CCXCVIII morpholinoNH 1-(4-Nme 544 189* phenylcarbonyl)piper- idin-4-yl CCXCIX morpholinoNH 1-(4-(NHCO 616 212 phenylcarbonyl)piper- idin-4-yl CCC morpholinoNH trans-4-CO 440 264* CCCI morpholinoNH trans-4-CO 454 259* cyclohexyl CCCII morpholinoNH trans-4-(3-Nme 536 191* pyrrolidinocarbonyl)- cyclohexyl CCCIII morpholinoNH trans-4- 508 248* (piperazinocarbonyl)- cyclohexyl CCCIV morpholinoNH trans-4-(4-Me- 522 228* piperazinocarbonyl)- cyclohexyl CCCV morpholinoNH trans-4- 522 >265* (homopiperazinocar- bonyl)cyclohexyl CCCVI morpholinoNH trans-4-(4- 536 220* methylhomopiperazinocar- bonyl)cyclohexyl
[1006]
TABLE 2
Example Number R R 100 2-pyridylmethyl 4-MeOC 101 2-pyridylmethyl 3-MeOC 102 2-pyridylmethyl 4-NH 103 2-pyridylmethyl 3-NH 104 2-pyridylmethyl 2-NH 105 2-pyridylmethyl 4-Me 106 2-pyridylmethyl 3-Me 107 2-pyridylmethyl 2-Me 108 2-pyridylmethyl 4-pyridyl 109 2-pyridylmethyl 3-pyridyl 110 2-pyridylmethyl 2-pyridyl 111 2-pyridylmethyl 2-thiazolyl 112 2-pyridylmethyl 2-pyrazolyl 113 2-pyridylmethyl 5-isoquinolyl 114 2-pyridylmethyl 3,4-methylenedioxyC 115 2-pyridylmethyl 3,4-ethylenedioxyC 116 2-pyridylmethyl 2-imidazolyl 117 2-pyridylmethyl 4-isoxazolyl 119 2-pyridylmethyl 4-HOC 120 2-pyridylmethyl 3-HOC 121 2-pyridylmethyl 3,4-diHOC 122 2-pyridylmethyl 4-NH 123 2-pyridylmethyl 3-NH 124 3-pyridylmethyl 4-MeOC 125 3-pyridylmethyl 3-MeOC 126 3-pyridylmethyl 4-NH 127 3-pyridylmethyl 3-NH 128 3-pyridylmethyl 2-NH 129 3-pyridylmethyl 4-Me 130 3-pyridylmethyl 2-Me 132 3-pyridylmethyl 4-pyridyl 133 3-pyridylmethyl 2-pyridyl 135 3-pyridylmethyl 2-thiazolyl 136 3-pyridylmethyl 2-pyrazolyl 137 3-pyridylmethyl 5-isoquinolyl 138 3-pyridylmethyl 3,4-methylenedioxyC 139 3-pyridylmethyl 3,4-ethylenedioxyC 140 3-pyridylmethyl 2-imidazolyl 141 3-pyridylmethyl 2-oxazolyl 142 3-pyridylmethyl 4-isoxazolyl 143 3-pyridylmethyl 4-HOC 144 3-pyridylmethyl 3-HOC 145 3-pyridylmethyl 3,4-diHOC 146 3-pyridylmethyl 4-NH 147 3-pyridylmethyl 3-NH 148 4-pyridylmethyl 4-MeOC 149 4-pyridylmethyl 3-MeOC 150 4-pyridylmethyl 4-NH 151 4-pyridylmethyl 3-NH 152 4-pyridylmethyl 2-NH 153 4-pyridylmethyl 4-Me 154 4-pyridylmethyl 3-Me 155 4-pyridylmethyl 2-Me 156 4-pyridylmethyl 4-pyridyl 157 4-pyridylmethyl 3-pyridyl 158 4-pyridylmethyl 2-pyridyl 159 4-pyridylmethyl 2-thiazolyl 160 4-pyridylmethyl 2-pyrazolyl 161 4-pyridylmethyl 5-isoquinolyl 162 4-pyridylmethyl 3,4-methylenedioxyC 163 4-pyridylmethyl 3,4-ethylenedioxyC 164 4-pyridylmethyl 2-imidazolyl 165 4-pyridylmethyl 2-oxazolyl 166 4-pyridylmethyl 4-isoxazolyl 167 4-pyridylmethyl 4-HOC 168 4-pyridylmethyl 3-HOC 169 4-pyridylmethyl 3,4-diHOC 170 4-pyridylmethyl 4-NH 171 4-pyridylmethyl 3-NH 172 2-NH 4-MeOC 173 2-NH 3-MeOC 174 2-NH 4-NH 175 2-NH 3-NH 176 2-NH 2-NH 177 2-NH 4-Me 178 2-NH 3-Me 179 2-NH 2-Me 180 2-NH 4-pyridyl 181 2-NH 3-pyridyl 182 2-NH 2-pyridyl 183 2-NH 2-thiazolyl 184 2-NH 2-pyrazolyl 185 2-NH 5-isoquinolyl 186 2-NH 3,4-methylenedioxyC 187 2-NH 3,4-ethylenedioxyC 188 2-NH 2-imidazolyl 189 2-NH 2-oxazolyl 190 2-NH 4-isoxazolyl 191 2-NH 4-HOC 192 2-NH 3-HOC 193 2-NH 3,4-diHOC 194 2-NH 4-NH 195 2-NH 3-NH 196 3-NH 3-MeOC 197 3-NH 4-NH 198 3-NH 3-NH 199 3-NH 2-NH 200 3-NH 4-Me 201 3-NH 3-Me 202 3-NH 2-Me 203 3-NH 4-pyridyl 204 3-NH 3-pyridyl 205 3-NH 2-pyridyl 206 3-NH 2-thiazolyl 207 3-NH 2-pyrazolyl 208 3-NH 5-isoquinolyl 209 3-NH 3,4-methylenedioxyC 210 3-NH 3,4-ethylenedioxyC 211 3-NH 2-imidazolyl 212 3-NH 2-oxazolyl 213 3-NH 4-isoxazolyl 214 3-NH 4-HOC 215 3-NH 3-HOC 216 3-NH 3,4-diHOC 217 3-NH 4-NH 218 3-NH 3-NH 219 4-NH 3-MeOC 220 4-NH 4-NH 221 4-NH 3-NH 222 4-NH 2-NH 223 4-NH 4-Me 224 4-NH 3-Me 225 4-NH 2-Me 226 4-NH 4-pyridyl 227 4-NH 3-pyridyl 228 4-NH 2-pyridyl 229 4-NH 2-thiazolyl 230 4-NH 2-pyrazolyl 231 4-NH 5-isoquinolyl 232 4-NH 3,4-methylenedioxyC 233 4-NH 2-imidazolyl 235 4-NH 2-oxazolyl 236 4-NH 4-isoxazolyl 237 4-NH 4-HOC 238 4-NH 3-HOC 239 4-NH 3,4-diHOC 240 4-NH 4-NH 241 4-NH 3-NH 242 2-MeOC 3-MeOC 243 2-MeOC 4-NH 244 2-MeOC 3-NH 245 2-MeOC 2-NH 246 2-MeOC 4-Me 247 2-MeOC 3-Me 248 2-MeOC 2-Me 249 2-MeOC 4-pyridyl 250 2-MeOC 3-pyridyl 251 2-MeOC 2-pyridyl 252 2-MeOC 2-thiazolyl 253 2-MeOC 2-pyrazolyl 254 2-MeOC 5-isoquinolyl 255 2-MeOC 3,4-ethylenedioxyC 257 2-MeOC 2-imidazolyl 258 2-MeOC 2-oxazolyl 259 2-MeOC 4-isoxazolyl 260 2-MeOC 4-HOC 261 2-MeOC 3-HOC 262 2-MeOC 3,4-diHOC 263 2-MeOC 4-NH 264 2-MeOC 3-NH 265 3-MeOC 3-MeOC 266 3-MeOC 4-NH 267 3-MeOC 3-NH 268 3-MeOC 2-NH 269 3-MeOC 4-Me 270 3-MeOC 3-Me 271 3-MeOC 2-Me 272 3-MeOC 4-pyridyl 273 3-MeOC 3-pyridyl 274 3-MeOC 2-pyridyl 275 3-MeOC 2-thiazolyl 276 3-MeOC 2-pyrazolyl 277 3-MeOC 5-isoquinolyl 278 3-MeOC 3,4-methylenedioxyC 279 3-MeOC 3,4-ethylenedioxyC 280 3-MeOC 2-imidazolyl 281 3-MeOC 2-oxazolyl 282 3-MeOC 4-isoxazolyl 283 3-MeOC 4-HOC 284 3-MeOC 3-HOC 285 3-MeOC 3,4-diHOC 286 3-MeOC 4-NH 287 3-MeOC 3-NH 288 4-MeOC 3-MeOC 289 4-MeOC 4-NH 290 4-MeOC 3-NH 291 4-MeOC 2-NH 292 4-MeOC 4-Me 293 4-MeOC 3-Me 294 4-MeOC 2-Me 295 4-MeOC 4-pyridyl 296 4-MeOC 3-pyridyl 297 4-MeOC 2-pyridyl 298 4-MeOC 2-thiazolyl 299 4-MeOC 2-pyrazolyl 300 4-MeOC 5-isoquinolyl 301 4-MeOC 3,4-methylenedioxyC 302 4-MeOC 3,4-ethylenedioxyC 303 4-MeOC 2-imidazolyl 304 4-MeOC 2-oxazolyl 305 4-MeOC 4-isoxazolyl 306 4-MeOC 4-HOC 307 4-MeOC 3-HOC 308 4-MeOC 3,4-diHOC 309 4-MeOC 4-NH 310 4-MeOC 3-NH 311 2-HOC 4-MeOC 312 2-HOC 3-MeOC 313 2-HOC 4-NH 314 2-HOC 3-NH 315 2-HOC 2-NH 316 2-HOC 4-Me 317 2-HOC 3-Me 318 2-HOC 2-Me 319 2-HOC 4-pyridyl 320 2-HOC 3-pyridyl 321 2-HOC 2-pyridyl 322 2-HOC 2-thiazolyl 323 2-HOC 2-pyrazolyl 324 2-HOC 5-isoquinolyl 325 2-HOC 3,4-methylenedioxyC 326 2-HOC 3,4-ethylenedioxyC 327 2-HOC 2-imidazolyl 328 2-HOC 2-oxazolyl 329 2-HOC 4-isoxazolyl 330 2-HOC 4-HOC 331 2-HOC 3-HOC 332 2-HOC 3,4-diHOC 333 2-HOC 4-NH 334 2-HOC 3-NH 335 3-HOC 4-MeOC 336 3-HOC 3-MeOC 337 3-HOC 4-NH 338 3-HOC 3-NH 339 3-HOC 2-NH 340 3-HOC 4-Me 341 3-HOC 3-Me 342 3-HOC 2-Me 343 3-HOC 4-pyridyl 344 3-HOC 3-pyridyl 345 3-HOC 2-pyridyl 346 3-HOC 2-thiazolyl 347 3-HOC 2-pyrazolyl 348 3-HOC 5-isoquinolyl 349 3-HOC 3,4-methylenedioxyC 350 3-HOC 3,4-ethylenedioxyC 351 3-HOC 2-imidazolyl 352 3-HOC 2-oxazolyl 353 3-HOC 4-isoxazolyl 354 3-HOC 4-HOC 355 3-HOC 3-HOC 356 3-HOC 3,4-diHOC 357 3-HOC 4-NH 358 3-HOC 3-NH 359 4-HOC 4-MeOC 360 4-HOC 3-MeOC 361 4-HOC 4-NH 362 4-HOC 3-NH 363 4-HOC 2-NH 364 4-HOC 4-Me 365 4-HOC 3-Me 366 4-HOC 2-Me 367 4-HOC 4-pyridyl 368 4-HOC 3-pyridyl 369 4-HOC 2-pyridyl 370 4-HOC 2-thiazolyl 371 4-HOC 2-pyrazolyl 372 4-HOC 5-isoquinolyl 373 4-HOC 3,4-methylenedioxyC 374 4-HOC 3,4-ethylenedioxyC 375 4-HOC 2-imidazolyl 376 4-HOC 2-oxazolyl 377 4-HOC 4-isoxazolyl 378 4-HOC 4-HOC 379 4-HOC 3-HOC 380 4-HOC 3,4-diHOC 381 4-HOC 4-NH 382 4-HOC 3-NH 383 4-ClC 3-MeOC 384 4-ClC 4-NH 385 4-ClC 3-NH 386 4-ClC 2-NH 387 4-ClC 4-Me 388 4-ClC 3-Me 389 4-ClC 2-Me 390 4-ClC 4-pyridyl 391 4-ClC 3-pyridyl 392 4-ClC 2-pyridyl 393 4-ClC 2-thiazolyl 394 4-ClC 2-pyrazolyl 395 4-ClC 5-isoquinolyl 396 4-ClC 3,4-methylenedioxyC 397 4-ClC 3,4-ethylenedioxyC 398 4-ClC 2-imidazolyl 399 4-ClC 2-oxazolyl 400 4-ClC 4-isoxazolyl 401 4-ClC 4-HOC 402 4-ClC 3-HOC 403 4-ClC 3,4-diHOC 404 4-ClC 4-NH 405 4-ClC 3-NH 406 2-NH 4-MeOC 407 2-NH 3-MeOC 408 2-NH 4-NH 409 2-NH 3-NH 410 2-NH 2-NH 411 2-NH 4-Me 412 2-NH 3-Me 413 2-NH 2-Me 414 2-NH 4-pyridyl 415 2-NH 3-pyridyl 416 2-NH 2-pyridyl 417 2-NH 2-thiazolyl 418 2-NH 2-pyrazolyl 419 2-NH 5-isoquinolyl 420 2-NH 3,4-methylenedioxyC 421 2-NH 3,4-ethylenedioxyC 422 2-NH 2-imidazolyl 423 2-NH 2-oxazolyl 424 2-NH 4-isoxazolyl 425 2-NH 4-HOC 426 2-NH 3-HOC 427 2-NH 3,4-diHOC 428 2-NH 4-NH 429 2-NH 3-NH 430 3-NH 4-MeOC 431 3-NH 3-MeOC 432 3-NH 4-NH 433 3-NH 3-NH 434 3-NH 2-NH 435 3-NH 4-Me 436 3-NH 3-Me 437 3-NH 2-Me 438 3-NH 4-pyridyl 439 3-NH 3-pyridyl 440 3-NH 2-pyridyl 441 3-NH 2-thiazolyl 442 3-NH 2-pyrazolyl 443 3-NH 5-isoquinolyl 444 3-NH 3,4-methylenedioxyC 445 3-NH 3,4-ethylenedioxyC 446 3-NH 2-imidazolyl 447 3-NH 2-oxazolyl 448 3-NH 4-isoxazolyl 449 3-NH 4-HOC 450 3-NH 3-HOC 451 3-NH 3,4-diHOC 452 3-NH 4-NH 453 3-NH 3-NH 454 4-NH 4-MeOC 455 4-NH 3-MeOC 456 4-NH 4-NH 457 4-NH 3-NH 458 4-NH 2-NH 459 4-NH 4-Me 460 4-NH 3-Me 461 4-NH 2-Me 462 4-NH 4-pyridyl 463 4-NH 3-pyridyl 464 4-NH 2-pyridyl 465 4-NH 2-thiazolyl 466 4-NH 2-pyrazolyl 467 4-NH 5-isoquinolyl 468 4-NH 3,4-methylenedioxyC 469 4-NH 3,4-ethylenedioxyC 470 4-NH 2-imidazolyl 471 4-NH 2-oxazolyl 472 4-NH 4-isoxazolyl 473 4-NH 4-HOC 474 4-NH 3-HOC 475 4-NH 3,4-diHOC 476 4-NH 4-NH 477 4-NH 3-NH 478 2-Me 4-MeOC 479 2-Me 3-MeOC 480 2-Me 4-NH 481 2-Me 3-NH 482 2-Me 2-NH 483 2-Me 4-Me 484 2-Me 3-Me 485 2-Me 2-Me 486 2-Me 4-pyridyl 487 2-Me 3-pyridyl 488 2-Me 2-pyridyl 489 2-Me 2-thiazolyl 490 2-Me 2-pyrazolyl 491 2-Me 5-isoquinolyl 492 2-Me 3,4-methylenedioxyC 493 2-Me 3,4-ethylenedioxyC 494 2-Me 2-imidazolyl 495 2-Me 2-oxazolyl 496 2-Me 4-isoxazolyl 497 2-Me 4-HOC 498 2-Me 3-HOC 499 2-Me 3,4-diHOC 500 2-Me 4-NH 501 2-Me 3-NH 502 3-Me 4-MeOC 503 3-Me 3-MeOC 504 3-Me 4-NH 505 3-Me 3-NH 506 3-Me 2-NH 507 3-Me 4-Me 508 3-Me 3-Me 509 3-Me 2-Me 510 3-Me 4-pyridyl 511 3-Me 3-pyridyl 512 3-Me 2-pyridyl 513 3-Me 2-thiazolyl 514 3-Me 2-pyrazolyl 515 3-Me 5-isoquinolyl 516 3-Me 3,4-methylenedioxyC 517 3-Me 3,4-ethylenedioxyC 518 3-Me 2-imidazolyl 519 3-Me 2-oxazolyl 520 3-Me 4-isoxazolyl 521 3-Me 4-HOC 522 3-Me 3-HOC 523 3-Me 3,4-diHOC 524 3-Me 4-NH 525 3-Me 3-NH 526 4-Me 4-MeOC 527 4-Me 3-MeOC 528 4-Me 4-NH 529 4-Me 3-NH 530 4-Me 2-NH 531 4-Me 4-Me 532 4-Me 3-Me 533 4-Me 2-Me 534 4-Me 4-pyridyl 535 4-Me 3-pyridyl 536 4-Me 2-pyridyl 537 4-Me 2-thiazolyl 538 4-Me 2-pyrazolyl 539 4-Me 5-isoquinolyl 540 4-Me 3,4-methylenedioxyC 541 4-Me 3,4-ethylenedioxyC 542 4-Me 2-imidazolyl 543 4-Me 2-oxazolyl 545 4-Me 4-isoxazolyl 546 4-Me 4-HOC 547 4-Me 3-HOC 548 4-Me 3,4-diHOC 549 4-Me 4-NH 550 4-Me 3-NH 551 H 3-MeOC 552 H 4-NH 553 H 3-NH 554 H 2-NH 555 H 4-Me 556 H 3-Me 557 H 2-Me 558 H 3-pyridyl 559 H 2-pyridyl 560 H 2-thiazolyl 561 H 2-pyrazolyl 562 H 4-isoquinolyl 563 H 3,4-methylenedioxyC 564 H 3,4-ethylenedioxyC 565 H 2-imidazolyl 566 H 2-oxazolyl 567 H 4-isoxazolyl 568 4-HOC 569 H 3-HOC 570 H 3,4-diHOC 571 H 4-NH 572 H 3-NH 573 Me 3-MeOC 574 Me 4-NH 575 Me 3-NH 576 Me 2-NH 577 Me 4-Me 578 Me 3-Me 579 Me 2-Me 580 Me 3-pyridyl 581 Me 2-pyridyl 582 Me 2-thiazolyl 583 Me 2-pyrazolyl 584 Me 5-isoquinolyl 585 Me 3,4-ethylenedioxyC 586 Me 2-imidazolyl 587 Me 2-oxazolyl 588 Me 4-isoxazolyl 589 Me 3-HOC 590 Me 3,4-diHOC 591 Me 4-NH 592 Me 3-NH 593 Et 3-MeOC 594 Et 4-NH 595 Et 3-NH 596 Et 2-NH 597 Et 4-Me 598 Et 3-Me 599 Et 2-Me 600 Et 4-pyridyl 601 Et 3-pyridyl 601 Et 2-pyridyl 603 Et 2-thiazolyl 604 Et 2-pyrazolyl 605 Et 5-isoquinolyl 606 Et 3,4-methylenedioxyC 607 Et 3,4-ethylenedioxyC 608 Et 2-imidazolyl 609 Et 2-oxazolyl 610 Et 4-isoxazolyl 611 Et 4-HOC 612 Et 3-HOC 613 Et 3,4-diHOC 614 Et 4-NH 615 Et 3-NH 616 Me 3-MeOC 617 Me 4-NH 618 Me 3-NH 619 Me 2-NH 620 Me 4-Me 621 Me 3-Me 622 Me 2-Me 623 Me 4-pyridyl 624 Me 3-pyridyl 625 Me 2-pyridyl 626 Me 2-thiazolyl 627 Me 2-pyrazolyl 628 Me 5-isoquinolyl 629 Me 3,4-methylenedioxyC 630 Me 3,4-ethylenedioxyC 631 Me 2-imidazolyl 632 Me 2-oxazolyl 633 Me 4-isoxazolyl 634 Me 4-HOC 635 Me 3-HOC 636 Me 3,4-diHOC 637 Me 4-NH 638 Me 3-NH 639 EtNHCH 3-MeOC 640 EtNHCH 4-NH 641 EtNHCH 3-NH 642 EtNHCH 2-NH 643 EtNHCH 4-Me 644 EtNHCH 3-Me 645 EtNHCH 2-Me 646 EtNHCH 4-pyridyl 647 EtNHCH 3-pyridyl 648 EtNHCH 2-pyridyl 649 EtNHCH 2-thiazolyl 650 EtNHCH 2-pyrazolyl 651 EtNHCH 5-isoquinolyl 652 EtNHCH 3,4-methylenedioxyC 653 EtNHCH 3,4-ethylenedioxyC 654 EtNHCH 2-imidazolyl 655 EtNHCH 2-oxazolyl 656 EtNHCH 4-isoxazolyl 657 EtNHCH 4-HOC 658 EtNHCH 3-HOC 659 EtNHCH 3,4-diHOC 660 EtNHCH 4-NH 661 EtNHCH 3-NH 662 HOCH 3-MeOC 663 HOCH 4-NH 664 HOCH 3-NH 665 HOCH 2-NH 666 HOCH 4-Me 667 HOCH 3-Me 668 HOCH 2-Me 669 HOCH 4-pyridyl 670 HOCH 3-pyridyl 671 HOCH 2-pyridyl 672 HOCH 2-thiazolyl 673 HOCH 2-pyrazolyl 674 HOCH 5-isoquinolyl 675 HOCH 3,4-methylenedioxyC 676 HOCH 3,4-ethylenedioxyC 677 HOCH 2-imidazolyl 678 HOCH 2-oxazolyl 679 HOCH 4-isoxazolyl 680 HOCH 4-HOC 681 HOCH 3-HOC 682 HOCH 3,4-diHOC 683 HOCH 4-NH 684 HOCH 3-NH 685 H 4-MeOC 686 H 3-MeOC 687 H 4-NH 688 H 3-NH 689 H 2-NH 690 H 4-Me 691 H 3-Me 692 H 2-Me 693 H 4-pyridyl 694 H 3-pyridyl 695 H 2-pyridyl 696 H 2-thiazolyl 697 H 2-pyrazolyl 698 H 5-isoquinolyl 699 H 3,4-methylenedioxyC 700 H 3,4-ethylenedioxyC 701 H 2-imidazolyl 702 H 2-oxazolyl 703 H 4-isoxazolyl 704 H 4-HOC 705 H 3-HOC 706 H 3,4-diHOC 707 H 4-NH 708 H 3-NH 709 Me 4-MeOC 710 Me 3-MeOC 711 Me 4-NH 712 Me 3-NH 713 Me 2-NH 714 Me 4-Me 715 Me 3-Me 716 Me 2-Me 717 Me 4-pyridyl 718 Me 3-pyridyl 719 Me 2-pyridyl 720 Me 2-thiazolyl 721 Me 2-pyrazolyl 722 Me 5-isoquinolyl 723 Me 3,4-methylenedioxyC 724 Me 3,4-ethylenedioxyC 725 Me 2-imidazolyl 726 Me 2-oxazolyl 727 Me 4-isoxazolyl 728 Me 4-HOC 729 Me 3-HOC 730 Me 3,4-diHOC 731 Me 4-NH 732 Me 3-NH 733 1-morpholinylmethyl 3-MeOC 734 1-morpholinylmethyl 4-NH 735 1-morpholinylmethyl 3-NH 736 1-morpholinylmethyl 2-NH 737 1-morpholinylmethyl 4-Me 738 1-morpholinylmethyl 3-Me 739 1-morpholinylmethyl 2-Me 740 1-morpholinylmethyl 4-pyridyl 741 1-morpholinylmethyl 3-pyridyl 742 1-morpholinylmethyl 2-pyridyl 743 1-morpholinylmethyl 2-thiazolyl 744 1-morpholinylmethyl 2-pyrazolyl 745 1-morpholinylmethyl 5-isoquinolyl 746 1-morpholinylmethyl 3,4-methylenedioxyC 747 1-morpholinylmethyl 3,4-ethylenedioxyC 748 1-morpholinylmethyl 2-imidazolyl 749 1-morpholinylmethyl 2-oxazolyl 750 1-morpholinylmethyl 4-isoxazolyl 751 1-morpholinylmethyl 4-HOC 752 1-morpholinylmethyl 3-HOC 753 1-morpholinylmethyl 3,4-diHOC 754 1-morpholinylmethyl 4-NH 755 1-morpholinylmethyl 3-NH 756 1-thiomorpholinylmethyl 3-MeOC 757 1-thiomorpholinylmethyl 4-NH 758 1-thiomorpholinylmethyl 3-NH 759 1-thiomorpholinylmethyl 2-NH 760 1-thiomorpholinylmethyl 4-Me 761 1-thiomorpholinylmethyl 3-Me 762 1-thiomorpholinylmethyl 2-Me 763 1-thiomorpholinylmethyl 4-pyridyl 764 1-thiomorpholinylmethyl 3-pyridyl 765 1-thiomorpholinylmethyl 2-pyridyl 766 1-thiomorpholinylmethyl 2-thiazolyl 767 1-thiomorpholinylmethyl 2-pyrazolyl 768 1-thiomorpholinylmethyl 5-isoquinolyl 769 1-thiomorpholinylmethyl 3,4-methylenedioxyC 771 1-thiomorpholinylmethyl 2-imidazolyl 772 1-thiomorpholinylmethyl 2-oxazolyl 773 1-thiomorpholinylmethyl 4-isoxazolyl 774 1-thiomorpholinylmethyl 4-HOC 775 1-thiomorpholinylmethyl 3-HOC 776 1-thiomorpholinylmethyl 3,4-diHOC 777 1-thiomorpholinylmethyl 4-NH 778 1-thiomorpholinylmethyl 3-NH 779 1-piperazinylmethyl 3-MeOC 780 1-piperazinylmethyl 4-NH 781 1-piperazinylmethyl 3-NH 782 1-piperazinylmethyl 2-NH 783 1-piperazinylmethyl 4-Me 784 1-piperazinylmethyl 3-Me 785 1-piperazinylmethyl 2-Me 786 1-piperazinylmethyl 4-pyridyl 787 1-piperazinylmethyl 3-pyridyl 788 1-piperazinylmethyl 2-pyridyl 789 1-piperazinylmethyl 2-thiazolyl 790 1-piperazinylmethyl 2-pyrazolyl 791 1-piperazinylmethyl 5-isoquinolyl 792 1-piperazinylmethyl 3,4-methylenedioxyC 793 1-piperazinylmethyl 3,4-ethylenedioxyC 794 1-piperazinylmethyl 2-imidazolyl 795 1-piperazinylmethyl 2-oxazolyl 796 1-piperazinylmethyl 4-isoxazolyl 797 1-piperazinylmethyl 4-HOC 798 1-piperazinylmethyl 3-HOC 799 1-piperazinylmethyl 3,4-diHOC 800 1-piperazinylmethyl 4-NH 801 1-piperazinylmethyl 3-NH
[1007]
Example Number R R 802 2-pyridylmethyl 4-MeOC 803 2-pyridylmethyl 3-MeOC 804 2-pyridylmethyl 4-NH 805 2-pyridylmethyl 3-NH 806 2-pyridylmethyl 2-NH 807 2-pyridylmethyl 4-Me 808 2-pyridylmethyl 3-Me 809 2-pyridylmethyl 2-Me 810 2-pyridylmethyl 4-pyridyl 811 2-pyridylmethyl 3-pyridyl 812 2-pyridylmethyl 2-pyridyl 813 2-pyridylmethyl 2-thiazolyl 814 2-pyridylmethyl 2-pyrazolyl 815 2-pyridylmethyl 5-isoquinolyl 816 2-pyridylmethyl 3,4-methylenedioxyC 817 2-pyridylmethyl 3,4-ethylenedioxyC 818 2-pyridylmethyl 2-imidazolyl 819 2-pyridylmethyl 2-oxazolyl 820 2-pyridylmethyl 4-isoxazolyl 821 2-pyridylmethyl 4-HOC 822 2-pyridylmethyl 3-HOC 823 2-pyridylmethyl 3,4-diHOC 824 2-pyridylmethyl 4-NH 825 2-pyridylmethyl 3-NH 826 3-pyridylmethyl 4-MeOC 827 3-pyridylmethyl 3-MeOC 828 3-pyridylmethyl 4-NH 829 3-pyridylmethyl 3-NH 830 3-pyridylmethyl 2-NH 831 3-pyridylmethyl 4-Me 832 3-pyridylmethyl 3-Me 833 3-pyridylmethyl 2-Me 834 3-pyridylmethyl 4-pyridyl 835 3-pyridylmethyl 3-pyridyl 836 3-pyridylmethyl 2-pyridyl 837 3-pyridylmethyl 2-thiazolyl 838 3-pyridylmethyl 2-pyrazolyl 839 3-pyridylmethyl 5-isoquinolyl 840 3-pyridylmethyl 3,4-methylenedioxyC 841 3-pyridylmethyl 3,4-ethylenedioxyC 842 3-pyridylmethyl 2-imidazolyl 843 3-pyridylmethyl 2-oxazolyl 844 3-pyridylmethyl 4-isoxazolyl 845 3-pyridylmethyl 4-HOC 846 3-pyridylmethyl 3-HOC 847 3-pyridylmethyl 3,4-diHOC 848 3-pyridylmethyl 4-NH 849 3-pyridylmethyl 3-NH 850 4-pyridylmethyl 4-MeOC 851 4-pyridylmethyl 3-MeOC 852 4-pyridylmethyl 4-NH 853 4-pyridylmethyl 3-NH 854 4-pyridylmethyl 2-NH 855 4-pyridylmethyl 4-Me 856 4-pyridylmethyl 3-Me 857 4-pyridylmethyl 2-Me 858 4-pyridylmethyl 4-pyridyl 859 4-pyridylmethyl 3-pyridyl 860 4-pyridylmethyl 2-pyridyl 861 4-pyridylmethyl 2-thiazolyl 862 4-pyridylmethyl 2-pyrazolyl 863 4-pyridylmethyl 5-isoquinolyl 864 4-pyridylmethyl 3,4-methylenedioxyC 865 4-pyridylmethyl 3,4-ethylenedioxyC 866 4-pyridylmethyl 2-imidazolyl 867 4-pyridylmethyl 2-oxazolyl 868 4-pyridylmethyl 4-isoxazolyl 869 4-pyridylmethyl 4-HOC 870 4-pyridylmethyl 3-HOC 871 4-pyridylmethyl 3,4-diHOC 872 4-pyridylmethyl 4-NH 873 4-pyridylmethyl 3-NH 874 2-NH 4-MeOC 875 2-NH 3-MeOC 876 2-NH 4-NH 877 2-NH 3-NH 878 2-NH 2-NH 879 2-NH 4-Me 880 2-NH 3-Me 881 2-NH 2-Me 882 2-NH 4-pyridyl 883 2-NH 3-pyridyl 884 2-NH 2-pyridyl 885 2-NH 2-thiazolyl 886 2-NH 2-pyrazolyl 887 2-NH 5-isoquinolyl 888 2-NH 3,4-methylenedioxyC 889 2-NH 3,4-ethylenedioxyC 890 2-NH 2-imidazolyl 891 2-NH 2-oxazolyl 892 2-NH 4-isoxazolyl 893 2-NH 4-HOC 894 2-NH 3-HOC 895 2-NH 3,4-diHOC 896 2-NH 4-NH 897 2-NH 3-NH 898 3-NH 4-MeOC 899 3-NH 3-MeOC 900 3-NH 4-NH 901 3-NH 3-NH 902 3-NH 2-NH 903 3-NH 4-Me 904 3-NH 3-Me 905 3-NH 2-Me 906 3-NH 4-pyridyl 907 3-NH 3-pyridyl 908 3-NH 2-pyridyl 909 3-NH 2-thiazolyl 910 3-NH 2-pyrazolyl 911 3-NH 5-isoquinolyl 912 3-NH 3,4-methylenedioxyC 913 3-NH 3,4-ethylenedioxyC 914 3-NH 2-imidazolyl 915 3-NH 2-oxazolyl 916 3-NH 4-isoxazolyl 917 3-NH 4-HOC 918 3-NH 3-HOC 919 3-NH 3,4-diHOC 920 3-NH 4-NH 921 3-NH 3-NH 922 4-NH 4-MeOC 923 4-NH 3-MeOC 924 4-NH 4-NH 925 4-NH 3-NH 926 4-NH 2-NH 927 4-NH 4-Me 928 4-NH 3-Me 930 4-NH 2-Me 931 4-NH 4-pyridyl 932 4-NH 3-pyridyl 933 4-NH 2-pyridyl 934 4-NH 2-thiazolyl 935 4-NH 2-pyrazolyl 936 4-NH 5-isoquinolyl 937 4-NH 3,4-methylenedioxyC 938 4-NH 3,4-ethylenedioxyC 939 4-NH 2-imidazolyl 940 4-NH 2-oxazolyl 941 4-NH 4-isoxazolyl 942 4-NH 4-HOC 943 4-NH 3-HOC 944 4-NH 3,4-diHOC 945 4-NH 4-NH 946 4-NH 3-NH 947 2-MeOC 4-MeOC 948 2-MeOC 3-MeOC 949 2-MeOC 4-NH 950 2-MeOC 3-NH 951 2-MeOC 2-NH 952 2-MeOC 4-Me 953 2-MeOC 3-Me 954 2-MeOC 2-Me 955 2-MeOC 4-pyridyl 956 2-MeOC 3-pyridyl 957 2-MeOC 2-pyridyl 958 2-MeOC 2-thiazolyl 959 2-MeOC 2-pyrazolyl 960 2-MeOC 5-isoquinolyl 961 2-MeOC 3,4-methylenedioxyC 962 2-MeOC 3,4-ethylenedioxyC 963 2-MeOC 2-imidazolyl 964 2-MeOC 2-oxazolyl 965 2-MeOC 4-isoxazolyl 966 2-MeOC 4-HOC 967 2-MeOC 3-HOC 968 2-MeOC 3,4-diHOC 969 2-MeOC 4-NH 970 2-MeOC 3-NH 971 3-MeOC 4-MeOC 972 3-MeOC 3-MeOC 973 3-MeOC 4-NH 974 3-MeOC 3-NH 975 3-MeOC 2-NH 976 3-MeOC 4-Me 977 3-MeOC 3-Me 978 3-MeOC 2-Me 979 3-MeOC 4-pyridyl 980 3-MeOC 3-pyridyl 981 3-MeOC 2-pyridyl 982 3-MeOC 2-thiazolyl 983 3-MeOC 2-pyrazolyl 984 3-MeOC 5-isoquinolyl 985 3-MeOC 3,4-methylenedioxyC 986 3-MeOC 3,4-ethylenedioxyC 987 3-MeOC 2-imidazolyl 988 3-MeOC 2-oxazolyl 989 3-MeOC 4-isoxazolyl 990 3-MeOC 4-HOC 991 3-MeOC 3-HOC 992 3-MeOC 3,4-diHOC 993 3-MeOC 4-NH 994 3-MeOC 3-NH 995 4-MeOC 4-MeOC 996 4-MeOC 3-MeOC 997 4-MeOC 4-NH 998 4-MeOC 3-NH 999 4-MeOC 2-NH 1000 4-MeOC 4-Me 1001 4-MeOC 3-Me 1002 4-MeOC 2-Me 1003 4-MeOC 4-pyridyl 1004 4-MeOC 3-pyridyl 1005 4-MeOC 2-pyridyl 1006 4-MeOC 2-thiazolyl 1007 4-MeOC 2-pyrazolyl 1008 4-MeOC 5-isoquinolyl 1009 4-MeOC 3,4-methylenedioxyC 1010 4-MeOC 3,4-ethylenedioxyC 1011 4-MeOC 2-imidazolyl 1012 4-MeOC 2-oxazolyl 1013 4-MeOC 4-isoxazolyl 1014 4-MeOC 4-HOC 1015 4-MeOC 3-HOC 1016 4-MeOC 3,4-diHOC 1017 4-MeOC 4-NH 1018 4-MeOC 3-NH 1019 2-HOC 4-MeOC 1020 2-HOC 3-MeOC 1021 2-HOC 4-NH 1022 2-HOC 3-NH 1023 2-HOC 2-NH 1024 2-HOC 4-Me 1025 2-HOC 3-Me 1026 2-HOC 2-Me 1027 2-HOC 4-pyridyl 1028 2-HOC 3-pyridyl 1029 2-HOC 2-pyridyl 1030 2-HOC 2-thiazolyl 1031 2-HOC 2-pyrazolyl 1032 2-HOC 5-isoquinolyl 1033 2-HOC 3,4-methylenedioxyC 1034 2-HOC 3,4-ethylenedioxyC 1035 2-HOC 2-imidazolyl 1036 2-HOC 2-oxazolyl 1037 2-HOC 4-isoxazolyl 1038 2-HOC 4-HOC 1039 2-HOC 3-HOC 1040 2-HOC 3,4-diHOC 1041 2-HOC 4-NH 1042 2-HOC 3-NH 1043 3-HOC 4-MeOC 1044 3-HOC 3-MeOC 1045 3-HOC 4-NH 1046 3-HOC 3-NH 1047 3-HOC 2-NH 1048 3-HOC 4-Me 1049 3-HOC 3-Me 1050 3-HOC 2-Me 1051 3-HOC 4-pyridyl 1052 3-HOC 3-pyridyl 1053 3-HOC 2-pyridyl 1054 3-HOC 2-thiazolyl 1055 3-HOC 2-pyrazolyl 1056 3-HOC 5-isoquinolyl 1057 3-HOC 3,4-methylenedioxyC 1058 3-HOC 3,4-ethylenedioxyC 1059 3-HOC 2-imidazolyl 1060 3-HOC 2-oxazolyl 1061 3-HOC 4-isoxazolyl 1062 3-HOC 4-HOC 1063 3-HOC 3-HOC 1064 3-HOC 3,4-diHOC 1065 3-HOC 4-NH 1066 3-HOC 3-NH 1067 4-HOC 4-MeOC 1068 4-HOC 3-MeOC 1069 4-HOC 4-NH 1070 4-HOC 3-NH 1071 4-HOC 2-NH 1072 4-HOC 4-Me 1073 4-HOC 3-Me 1074 4-HOC 2-Me 1075 4-HOC 4-pyridyl 1076 4-HOC 3-pyridyl 1077 4-HOC 2-pyridyl 1078 4-HOC 2-thiazolyl 1079 4-HOC 2-pyrazolyl 1080 4-HOC 5-isoquinolyl 1081 4-HOC 3,4-methylenedioxyC 1082 4-HOC 3,4-ethylenedioxyC 1083 4-HOC 2-imidazolyl 1084 4-HOC 2-oxazolyl 1085 4-HOC 4-isoxazolyl 1086 4-HOC 4-HOC 1087 4-HOC 3-HOC 1088 4-HOC 3,4-diHOC 1089 4-HOC 4-NH 1090 4-HOC 3-NH 1091 4-ClC 4-MeOC 1092 4-ClC 3-MeOC 1093 4-ClC 4-NH 1094 4-ClC 3-NH 1095 4-ClC 2-NH 1096 4-ClC 4-Me 1097 4-ClC 3-Me 1098 4-ClC 2-Me 1099 4-ClC 4-pyridyl 1100 4-ClC 3-pyridyl 1101 4-ClC 2-pyridyl 1102 4-ClC 2-thiazolyl 1103 4-ClC 2-pyrazolyl 1104 4-ClC 5-isoquinolyl 1105 4-ClC 3,4-methylenedioxyC 1106 4-ClC 3,4-ethylenedioxyC 1107 4-ClC 2-imidazolyl 1108 4-ClC 2-oxazolyl 1109 4-ClC 4-isoxazolyl 1110 4-ClC 4-HOC 1111 4-ClC 3-HOC 1112 4-ClC 3,4-diHOC 1113 4-ClC 4-NH 1114 4-ClC 3-NH 1115 2-NH 4-MeOC 1116 2-NH 3-MeOC 1117 2-NH 4-NH 1118 2-NH 3-NH 1119 2-NH 2-NH 1120 2-NH 4-Me 1121 2-NH 3-Me 1122 2-NH 2-Me 1123 2-NH 4-pyridyl 1124 2-NH 3-pyridyl 1125 2-NH 2-pyridyl 1126 2-NH 2-thiazolyl 1127 2-NH 2-pyrazolyl 1128 2-NH 5-isoquinolyl 1129 2-NH 3,4-methylenedioxyC 1130 2-NH 3,4-ethylenedioxyC 1131 2-NH 2-imidazolyl 1132 2-NH 2-oxazolyl 1133 2-NH 4-isoxazolyl 1134 2-NH 4-HOC 1135 2-NH 3-HOC 1136 2-NH 3,4-diHOC 1137 2-NH 4-NH 1138 2-NH 3-NH 1139 3-NH 4-MeOC 1140 3-NH 3-MeOC 1141 3-NH 4-NH 1142 3-NH 3-NH 1143 3-NH 2-NH 1144 3-NH 4-Me 1145 3-NH 3-Me 1146 3-NH 2-Me 1147 3-NH 4-pyridyl 1148 3-NH 3-pyridyl 1149 3-NH 2-pyridyl 1150 3-NH 2-thiazolyl 1151 3-NH 2-pyrazolyl 1152 3-NH 5-isoquinolyl 1153 3-NH 3,4-methylenedioxyC 1154 3-NH 3,4-ethylenedioxyC 1155 3-NH 2-imidazolyl 1156 3-NH 2-oxazolyl 1157 3-NH 4-isoxazolyl 1158 3-NH 4-HOC 1159 3-NH 4-HOC 1160 3-NH 3,4-diHOC 1161 3-NH 4-NH 1162 3-NH 3-NH 1163 4-NH 4-MeOC 1164 4-NH 3-MeOC 1165 4-NH 4-NH 1166 4-NH 3-NH 1167 4-NH 2-NH 1168 4-NH 4-Me 1169 4-NH 3-Me 1170 4-NH 2-Me 1171 4-NH 4-pyridyl 1172 4-NH 3-pyridyl 1173 4-NH 2-pyridyl 1174 4-NH 2-thiazolyl 1175 4-NH 2-pyrazolyl 1176 4-NH 5-isoquinolyl 1177 4-NH 3,4-methylenedioxyC 1178 4-NH 3,4-ethylenedioxyC 1179 4-NH 2-imidazolyl 1180 4-NH 2-oxazolyl 1181 4-NH 4-isoxazolyl 1182 4-NH 4-HOC 1183 4-NH 3-HOC 1184 4-NH 3,4-diHOC 1185 4-NH 4-NH 1186 4-NH 3-NH 1187 2-Me 4-MeOC 1188 2-Me 3-MeOC 1189 2-Me 4-NH 1190 2-Me 3-NH 1191 2-Me 2-NH 1192 2-Me 4-Me 1193 2-Me 3-Me 1194 2-Me 2-Me 1195 2-Me 4-pyridyl 1196 2-Me 3-pyridyl 1197 2-Me 2-pyridyl 1198 2-Me 2-thiazolyl 1199 2-Me 2-pyrazolyl 1200 2-Me 5-isoquinolyl 1201 2-Me 3,4-methylenedioxyC 1202 2-Me 3,4-ethylenedioxyC 1203 2-Me 2-imidazolyl 1204 2-Me 2-oxazolyl 1205 2-Me 4-isoxazolyl 1206 2-Me 4-HOC 1207 2-Me 3-HOC 1208 2-Me 3,4-diHOC 1209 2-Me 4-NH 1210 2-Me 3-NH 1211 3-Me 4-MeOC 1212 3-Me 3-MeOC 1213 3-Me 4-NH 1214 3-Me 3-NH 1215 3-Me 2-NH 1216 3-Me 4-Me 1217 3-Me 3-Me 1218 3-Me 2-Me 1219 3-Me 4-pyridyl 1220 3-Me 3-pyridyl 1221 3-Me 2-pyridyl 1222 3-Me 2-thiazolyl 1223 3-Me 2-oyrazolyl 1224 3-Me 5-isoquinolyl 1225 3-Me 3,4-methylenedioxyC 1226 3-Me 3,4-ethylenedioxyC 1227 3-Me 2-imidazolyl 1228 3-Me 2-oxazolyl 1229 3-Me 4-isoxazolyl 1230 3-Me 4-HOC 1231 3-Me 3-HOC 1232 3-Me 3,4-diHOC 1233 3-Me 4-NH 1234 3-Me 3-NH 1235 4-Me 4-MeOC 1236 4-Me 3-MeOC 1237 4-Me 4-NH 1238 4-Me 3-0NH 1239 4-Me 2-NH 1240 4-Me 4-Me 1241 4-Me 3-Me 1242 4-Me 2-Me 1243 4-Me 4-pyridyl 1244 4-Me 3-pyridyl 1245 4-Me 2-pyridyl 1246 4-Me 2-thiazolyl 1247 4-Me 2-pyrazolyl 1248 4-Me 5-isoquinolyl 1249 4-Me 3,4-methylenedioxyC 1250 4-Me 3,4-ethylenedioxyC 1251 4-Me 2-imidazolyl 1252 4-Me 2-oxazolyl 1253 4-Me 4-isoxazolyl 1254 4-Me 4-HOC 1255 4-Me 3-HOC 1256 4-Me 3,4-diHOC 1257 4-Me 4-NH 1258 4-Me 3-NH 1259 H 4-MeOC 1260 H 3-MeOC 1261 H 4-NH 1262 H 3-NH 1263 H 2-NH 1264 H 4-Me 1265 H 3-Me 1266 H 2-Me 1267 H 4-pyridyl 1268 H 3-pyridyl 1269 H 2-pyridyl 1270 H 2-thiazolyl 1271 H 2-pyrazolyl 1272 H 5-isoquinolyl 1273 H 3,4-methylenedioxyC 1274 H 3,4-ethylenedioxyC 1275 H 2-imidazolyl 1276 H 2-oxazolyl 1277 H 4-isoxazolyl 1278 H 4-HOC 1279 H 3-HOC 1280 H 3,4-diHOC 1281 H 4-NH 1282 H 3-NH 1283 Me 4-MeOC 1284 Me 3-MeOC 1285 Me 4-NH 1286 Me 3-NH 1287 Me 2-NH 1288 Me 4-Me 1289 Me 3-Me 1290 Me 2-Me 1291 Me 4-pyridyl 1292 Me 3-pyridyl 1293 Me 2-pyridyl 1294 Me 2-thiazolyl 1295 Me 2-pyrazolyl 1296 Me 5-isoquinolyl 1297 Me 3,4-methylenedioxyC 1298 Me 3,4-ethylenedioxyC 1299 Me 2-imidazolyl 1300 Me 2-oxazolyl 1301 Me 4-isoxazolyl 1302 Me 4-HOC 1303 Me 3-HOC 1304 Me 3,4-diHOC 1305 Me 4-NH 1306 Me 3-NH 1307 Et 3-MeOC 1309 Et 4-NH 1310 Et 2-NH 1311 Et 4-Me 1313 Et 3-Me 1314 Et 2-Me 1315 Et 4-pyridyl 1316 Et 3-pyridyl 1317 Et 2-pyridyl 1318 Et 2-thiazolyl 1319 Et 2-pyrazolyl 1320 Et 5-isoquinolyl 1321 Et 3,4-methylenedioxC 1322 Et 3,4-ethylenedioxyC 1323 Et 2-imidazolyl 1324 Et 2-oxazolyl 1325 Et 4-isoxazolyl 1326 Et 4-HOC 1327 Et 3-HOC 1328 Et 3,4-diHOC 1329 Et 4-NH 1330 Et 3-NH 1331 2-NH 4-MeOC 1332 2-NH 3-MeOC 1333 2-NH 4-NH 1334 2-NH 3-NH 1335 2-NH 2-NH 1336 2-NH 4-Me 1337 2-NH 3-Me 1338 2-NH 2-Me 1339 2-NH 4-pyridyl 1340 2-NH 3-pyridyl 1341 2-NH 2-pyridyl 1342 2-NH 2-thiazolyl 1343 2-NH 2-pyrazolyl 1344 2-NH 5-isoquinolyl 1345 2-NH 3,4-methylenedioxyC 1346 2-NH 3,4-ethylenedioxyC 1347 2-NH 2-imidazolyl 1348 2-NH 2-oxazolyl 1349 2-NH 4-isoxazolyl 1350 2-NH 4-HOC 1351 2-NH 3-HOC 1352 2-NH 3,4-diHOC 1353 2-NH 4-NH 1354 2-NH 3-NH 1355 3-NH 4-MeOC 1356 3-NH 3-MeOC 1357 3-NH 4-NH 1358 3-NH 3-NH 1359 3-NH 2-NH 1360 3-NH 4-Me 1361 3-NH 3-MNe 1362 3-NH 2-Me 1363 3-NH 4-pyridyl 1364 3-NH 3-pyridyl 1365 3-NH 2-pyridyl 1366 3-NH 2-thiazolyl 1367 3-NH 2-pyrazolyl 1367 3-NH 5-isoquinolyl 1369 3-NH 3,4-methylenedioxyC 1370 3-NH 3,4-ethylenedioxyC 1371 3-NH 2-imidazolyl 1372 3-NH 2-oxazolyl 1373 3-NH 4-isoxazolyl 1374 3-NH 4-HOC 1375 3-NH 3-HOC 1376 3-NH 3,4-diHOC 1377 3-NH 4-NH 1378 3-NH 3-NH 1379 4-NH 4-MeOC 1380 4-NH 3-MeOC 1381 4-NH 4-NH 1382 4-NH 3-NH 1383 4-NH 2-NH 1384 4-NH 4-Me 1385 4-NH 3-Me 1386 4-NH 2-Me 1387 4-NH 4-pyridyl 1388 4-NH 3-pyridyl 1389 4-NH 2-pyridyl 1390 4-NH 2-thiazolyl 1391 4-NH 2-pyrazolyl 1392 4-NH 5-isoquinolyl 1393 4-NH 3,4-methylenedioxyC 1394 4-NH 3,4-ethylenedioxyC 1395 4-NH 2-imidazolyl 1396 4-NH 2-oxazolyl 1397 4-NH 4-isoxazolyl 1398 4-NH 4-HOC 1399 4-NH 3-HOC 1400 4-NH 3,4-diHOC 1401 4-NH 4-NH 1402 4-NH 3-NH 1403 2-MeOC 3-MeOC 1405 2-MeOC 4-NH 1406 2-MeOC 3-NH 1407 2-MeOC 2-NH 1408 2-MeOC 4-Me 1409 2-MeOC 3-Me 1410 2-MeOC 2-Me 1411 2-MeOC 4-pyridyl 1412 2-MeOC 3-pyridyl 1413 2-MeOC 2-pyridyl 1414 2-MeOC 2-thiazolyl 1415 2-MeOC 2-pyrazolyl 1416 2-MeOC 5-isoquinolyl 1417 2-MeOC 3,4-methylenedioxyC 1418 2-MeOC 3,4-ethylenedioxyC 1419 2-MeOC 2-imidazolyl 1420 2-MeOC 2-oxazolyl 1421 2-MeOC 4-isoxazolyl 1422 2-MeOC 4-HOC 1423 2-MeOC 3-HOC 1424 2-MeOC 3,4-diHOC 1425 2-MeOC 4-NH 1426 2-MeOC 3-NH 1427 3-MeOC 4-MeOC 1428 3-MeOC 3-MeOC 1429 3-MeOC 4-NH 1430 3-MeOC 3-NH 1431 3-MeOC 2-NH 1432 3-MeOC 4-Me 1433 3-MeOC 3-Me 1434 3-MeOC 2-Me 1435 3-MeOC 4-pyridyl 1436 3-MeOC 3-pyridyl 1437 3-MeOC 2-pyridyl 1438 3-MeOC 2-thiazolyl 1439 3-MeOC 2-pyrazolyl 1440 3-MeOC 5-isoquinolyl 1441 3-MeOC 3,4-methylenedioxyC 1442 3-MeOC 3,4-ethylenedioxyC 1443 3-MeOC 2-imidazolyl 1444 3-MeOC 2-oxazolyl 1445 3-MeOC 4-isoxazolyl 1446 3-MeOC 4-HOC 1447 3-MeOC 3-HOC 1448 3-MeOC 3,4-diHOC 1449 3-MeOC 4-NH 1450 3-MeOC 3-NH 1451 4-MeOC 4-MeOC 1452 4-MeOC 3-MeOC 1453 4-MeOC 4-NH 1454 4-MeOC 3-NH 1455 4-MeOC 2-NH 1456 4-MeOC 4-Me 1457 4-MeOC 3-Me 1458 4-MeOC 2-Me 1459 4-MeOC 4-pyridyl 1460 4-MeOC 3-pyridyl 1461 4-MeOC 2-pyridyl 1462 4-MeOC 2-thiazolyl 1463 4-MeOC 2-pyrazolyl 1464 4-MeOC 5-isoquinolyl 1465 4-MeOC 3,4-methylenedioxyC 1466 4-MeOC 3,4-ethylenedioxyC 1467 4-MeOC 2-imidazolyl 1468 4-MeOC 2-oxazolyl 1469 4-MeOC 4-isoxazolyl 1470 4-MeOC 4-HOC 1471 4-MeOC 3-HOC 1472 4-MeOC 3,4-diHOC 1473 4-MeOC 4-NH 1474 4-MeOC 3-NH 1475 2-HOC 4-MeOC 1476 2-HOC 3-MeOC 1477 2-HOC 4-NH 1478 2-HOC 3-NH 1479 2-HOC 2-NH 1480 2-HOC 4-Me 1481 2-HOC 3-Me 1482 2-HOC 2-Me 1483 2-HOC 4-pyridyl 1484 2-HOC 3-pyridyl 1485 2-HOC 2-pyridyl 1486 2-HOC 2-thiazolyl 1487 2-HOC 2-pyrazolyl 1488 2-HOC 5-isoquinolyl 1489 2-HOC 3,4-methylenedioxyC 1490 2-HOC 3,4-ethylenedioxyC 1491 2-HOC 2-imidazolyl 1492 2-HOC 2-oxazolyl 1493 2-HOC 4-isoxazolyl 1494 2-HOC 4-HOC 1495 2-HOC 3-HOC 1496 2-HOC 3,4-diHOC 1497 2-HOC 4-NH 1498 2-HOC 3-NH 1499 3-HOC 4-MeOC 1500 3-HOC 3-MeOC 1501 3-HOC 4-NH 1502 3-HOC 3-NH 1503 3-HOC 2-NH 1504 3-HOC 4-Me 1505 3-HOC 3-Me 1506 3-HOC 2-Me 1507 3-HOC 4-pyridyl 1508 3-HOC 3-pyridyl 1509 3-HOC 2-pyridyl 1510 3-HOC 2-thiazolyl 1511 3-HOC 2-pyrazolyl 1512 3-HOC 5-isoquinolyl 1513 3-HOC 3,4-methylenedioxyC 1514 3-HOC 3,4-ethylenedioxyC 1514 3-HOC 2-imidazolyl 1515 3-HOC 2-oxazolyl 1517 3-HOC 4-isoxazolyl 1518 3-HOC 4-HOC 1519 3-HOC 3-HOC 1520 3-HOC 3,4-diHOC 1521 3-HOC 4-NH 1522 3-HOC 3-NH 1523 4-HOC 4-MeOC 1524 4-HOC 3-MeOC 1525 4-HOC 4-NH 1526 4-HOC 3-NH 1527 4-HOC 2-NH 1528 4-HOC 4-Me 1529 4-HOC 3-Me 1530 4-HOC 2-Me 1531 4-HOC 4-pyridyl 1532 4-HOC 3-pyridyl 1533 4-HOC 2-pyridyl 1534 4-HOC 2-thiazolyl 1535 4-HOC 2-pyrazolyl 1536 4-HOC 5-isoquinolyl 1537 4-HOC 3,4-methylenedioxyC 1538 4-HOC 3,4-ethylenedioxyC 1539 4-HOC 2-imidazolyl 1540 4-HOC 2-oxazolyl 1541 4-HOC 4-isoxazolyl 1542 4-HOC 4-HOC 1543 4-HOC