Claims
- 1. A method of treating a mammal having precancerous lesions comprising administering a pharmacologically effective amount of a compound of formula I whereinR1 is selected from a group consisting of lower alkyl, —(CR6R7)—(CH2)x—C(O)—OR4, —(CH2)x—C(O)—NHR5, or —(CH2)x—C(O)—NR6R7; R2 is selected from a group consisting of lower alkyl, alkenyl, —(CH2)m—R8, substituted or unsubstituted aryl wherein said aryl group is selected from the group consisting of phenyl, benzyl, pyridyl, pyrimidyl, pyrazinyl, piperidyl, imidazolyl, indolyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl, and wherein said substituents are one to five selected from the group consisting of halogen, lower alkyl, lower alkoxy, amino, nitro, and alkoxycarbonyl; R3 is selected from a group consisting of halogen, lower alkoxy, lower alkyl, benzoyl, nitro, haloalkyl, alkoxycarbonyl, lower alkenoxy, and aryloxy, wherein said aryl group is selected from a group consisting of phenyl and benzyl; R4 is hydrogen or lower alkyl; R5 is selected from a group consisting of hydrogen, lower alkyl, benzyl, pyridyl, pyrimidinyl, pyrazinyl, imidazolyl, indolyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl; R6 and R7 are independently selected from a group consisting of hydrogen, lower alkyl, tetrahydrofuranyl, tetrahydrofuranyl methyl, —(CH2)x—C(O)—NH2, —(CH2)x—C(O)—OR4, lower alkoxy, cyclohexylmethyl, substituted or unsubstituted phenyl, piperidyl, and benzyl, wherein said substituents are one to three selected from the group consisting of halogen, lower alkyl, lower alkoxy, lower alkoxycarbonyl, and diethylamine; R8 is selected from a group consisting of CN, alkylcarbonyloxy, lower alkylcarbonyl, and arylcarbonyloxy, wherein said aryl is one from a group consisting of phenyl and benzyl; x is 0, 1 or 2; m is 0, 1,2 or 3; and n is 0, 1, or 2.
- 2. The method of claim 1 whereinR1 is selected from a group consisting of lower alkyl, —(CH2)x—C(O)—NHR5, or —(CH2)x—C(O)—NR6R7; R2 is selected from a group consisting of substituted or unsubstituted aryl wherein said aryl group is selected from the group consisting of phenyl, benzyl, pyridyl, pyrimidyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl, and wherein said substituents are one to three selected from the group consisting of halogen, lower alkoxy, amino, nitro, and alkoxycarbonyl; R3 is selected from a group consisting of halogen, lower alkoxy, lower alkyl, benzoyl, nitro, haloalkyl, alkoxycarbonyl, and aryloxy, wherein said aryl group is selected from a group consisting of phenyl and benzyl; R5 is selected from a group consisting of benzyl, pyridyl, pyrimidinyl, triazinyl, tetrazolyl, thiophenyl, furanyl, pyrazolyl, and pyrrolyl; R6 and R7 are independently selected from a group consisting —(CH2)x—C(O)—NH2, cyclohexylmethyl, substituted phenyl and benzyl, wherein said substituents are one or two selected from the group consisting of halogen, lower alkoxy, lower alkoxycarbonyl, and diethylamine; R8 is selected from a group consisting of lower alkylcarbonyl, and arylcarbonyloxy, wherein said aryl is benzyl; x is 0, 1 or 2; m is 0, 1, or 2; and n is 0, 1, or 2.
- 3. The method of claim 1 whereinR1 is selected from a group consisting of —(CH2)x—C(O)—NHR5, or —(CH2)x—C(O)—NR6R7; R2 is selected from a group consisting of substituted aryl wherein said aryl group is selected from the group consisting of phenyl, benzyl, pyridyl, pyrimidyl, and triazinyl, and wherein said substituents are two or three selected from the group consisting of halogen, lower alkoxy, amino, nitro, and alkoxycarbonyl; R3 is selected from a group consisting of halogen, lower alkoxy, benzoyl, haloalkyl, and alkoxycarbonyl, wherein said aryl group is selected from a group consisting of phenyl and benzyl; R4 is lower alkyl; R5 is selected from a group consisting of benzyl, pyridyl, pyrimidinyl, and triazinyl, R6 and R7 are independently selected from a group consisting —(CH2)x—C(O)—NH2, substituted phenyl and benzyl, wherein said substituents are two selected from the group consisting of lower alkoxy, and diethylamine; R8 is arylcarbonyloxy, wherein said aryl is benzyl; x is 0 or 1; m is 0 or 1; and n is 0 or 1.
- 4. A method for inhibiting the growth of neoplastic cells comprising exposing the cells to a growth inhibiting effective amount of a compound of Formula I whereinR1 is selected from a group consisting of lower alkyl, —(CR6R7)—(CH2)x—C(O)—OR4, —(CH2)x—C(O)—NHR5, or —(CH2)x—C(O)—NR6R7; R2 is selected from a group consisting of lower alkyl, alkenyl, —(CH2)m—R8, substituted or unsubstituted aryl wherein said aryl group is selected from the group consisting of phenyl, benzyl, pyridyl, pyrimidyl, pyrazinyl, piperidyl, imidazolyl, indolyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl, and wherein said substituents are one to five selected from the group consisting of halogen, lower alkyl, lower alkoxy, amino, nitro, and alkoxycarbonyl; R3 is selected from a group consisting of halogen, lower alkoxy, lower alkyl, benzoyl, nitro, haloalkyl, alkoxycarbonyl, lower alkenoxy, and aryloxy, wherein said aryl group is selected from a group consisting of phenyl and benzyl; R4 is hydrogen or lower alkyl; R5 is selected from a group consisting of hydrogen, lower alkyl, benzyl, pyridyl, pyrimidinyl, pyrazinyl, imidazolyl, indolyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl; R6 and R7 are independently selected from a group consisting of hydrogen, lower alkyl, tetrahydrofuranyl, tetrahydrofuranyl methyl, —(CH2)x—C(O)—NH2, —(CH2)x—C(O)—OR4, lower alkoxy, cyclohexylmethyl, substituted or unsubstituted phenyl, piperidyl, and benzyl, wherein said substituents are one to three selected from the group consisting of halogen, lower alkyl, lower alkoxy, lower alkoxycarbonyl, and diethylamine; R8 is selected from a group consisting of CN, alkylcarbonyloxy, lower alkylcarbonyl, and arylcarbonyloxy, wherein said aryl is one from a group consisting of phenyl and benzyl; x is 0, 1 or 2; m is 0, 1, 2 or 3; and n is 0, 1, or 2.
- 5. The method of claim 4 whereinR1 is selected from a group consisting of lower alkyl, —(CH2)x—C(O)—NHR5, or —(CH2)x—C(O)—NR6R7; R2 is selected from a group consisting of substituted or unsubstituted aryl wherein said aryl group is selected from the group consisting of phenyl, benzyl, pyridyl, pyrimidyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl, and wherein said substituents are one to three selected from the group consisting of halogen, lower alkoxy, amino, nitro, and alkoxycarbonyl; R3 is selected from a group consisting of halogen, lower alkoxy, lower alkyl, benzoyl, nitro, haloalkyl, alkoxycarbonyl, and aryloxy, wherein said aryl group is selected from a group consisting of phenyl and benzyl; R5 is selected from a group consisting of benzyl, pyridyl, pyrimidinyl, triazinyl, tetrazolyl, thiophenyl, furanyl, pyrazolyl, and pyrrolyl; R6 and R7 are independently selected from a group consisting —(CH2)x—C(O)—NH2, cyclohexylmethyl, substituted phenyl and benzyl, wherein said substituents are one or two selected from the group consisting of halogen, lower alkoxy, lower alkoxycarbonyl, and diethylamine; R8 is selected from a group consisting of lower alkylcarbonyl, and arylcarbonyloxy, wherein said aryl is benzyl; x is 0, 1 or 2; m is 0, 1, or 2; and n is 0, 1, or 2.
- 6. A method for regulating apoptosis in human cells comprising exposing said cells to an effective amount of a compound of the formula: whereinR1 is selected from a group consisting of lower alkyl, —(CR6R7)—(CH2)x—C(O)—OR4, —(CH2)x—C(O)—NHR5, or —(CH2)x—C(O)—NR6R7; R2 is selected from a group consisting of lower alkyl, alkenyl, (CH2)m—R8, substituted or unsubstituted aryl wherein said aryl group is selected from the group consisting of phenyl, benzyl, pyridyl, pyrimidyl, pyrazinyl, piperidyl, imidazolyl, indolyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl, and wherein said substituents are one to five selected from the group consisting of halogen, lower alkyl, lower alkoxy, amino, nitro, and alkoxycarbonyl; R3 is selected from a group consisting of halogen, lower alkoxy, lower alkyl, benzoyl, nitro, haloalkyl, alkoxycarbonyl, lower alkenoxy, and aryloxy, wherein said aryl group is selected from a group consisting of phenyl and benzyl; R4 is hydrogen or lower alkyl; R5 is selected from a group consisting of hydrogen, lower alkyl, benzyl, pyridyl, pyrimidinyl, pyrazinyl, imidazolyl, indolyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl; R6 and R7 are independently selected from a group consisting of hydrogen, lower alkyl, tetrahydrofuranyl, tetrahydrofuranyl methyl, —(CH2)x—C(O)—NH2, —(CH2)x—C(O)—OR4, lower alkoxy, cyclohexylmethyl, substituted or unsubstituted phenyl, piperidyl, and benzyl, wherein said substituents are one to three selected from the group consisting of halogen, lower alkyl, lower alkoxy, lower alkoxycarbonyl, and diethylamine; R8 is selected from a group consisting of CN, alkylcarbonyloxy, lower alkylcarbonyl, and arylcarbonyloxy, wherein said aryl is one from a group consisting of phenyl and benzyl; x is 0, 1 or 2; m is 0, 1, 2 or 3; and n is 0, 1, or 2.
- 7. The method of claim 6 whereinR1 is selected from a group consisting of lower alkyl, —(CH2)x—C(O)—NHR5, or —(CH2)x—C(O)—NR6R7; R2 is selected from a group consisting of substituted or unsubstituted aryl wherein said aryl group is selected from the group consisting of phenyl, benzyl, pyridyl, pyrimidyl, triazinyl, tetrazolyl, thiophenyl, furanyl, thiazolyl, pyrazolyl, and pyrrolyl, and wherein said substituents are one to three selected from the group consisting of halogen, lower alkoxy, amino, nitro, and alkoxycarbonyl; R3 is selected from a group consisting of halogen, lower alkoxy, lower alkyl, benzoyl, nitro, haloalkyl, alkoxycarbonyl, and aryloxy, wherein said aryl group is selected from a group consisting of phenyl and benzyl; R5 is selected from a group consisting of benzyl, pyridyl, pyrimidinyl, triazinyl, tetrazolyl, thiophenyl, furanyl, pyrazolyl, and pyrrolyl; R6 and R7 are independently selected from a group consisting —(CH2)x—C(O)—NH2, cyclohexylmethyl, substituted phenyl and benzyl, wherein said substituents are one or two selected from the group consisting of halogen, lower alkoxy, lower alkoxycarbonyl, and diethylamine; R8 is selected from a group consisting of lower alkylcarbonyl, and arylcarbonyloxy, wherein said aryl is benzyl; x is 0, 1 or 2; m is 0, 1, or 2; and n is 0, 1, or 2.
Parent Case Info
This application is a Continuation of prior U.S. application Ser. No. 09/200,138 filed on Nov. 24, 1998 entitled “Method For Treating Neoplasia by Exposure to N,N′-Substituted Benzimidazol-2-Ones,” now abandoned, which is incorporated herein by reference.
Foreign Referenced Citations (1)
Number |
Date |
Country |
WO 9519978 |
Jul 1995 |
WO |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/200138 |
Nov 1998 |
US |
Child |
09/639909 |
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US |