Claims
- 1. A compound of formula A:
- 2. The compound of claim 1, wherein
X is selected from S and O; R1 is selected from OH, OCH3, and OC6H5; R2 is selected from H, OH, CH3, and OCH3; and R3 is selected from OH and 2-(1-piperidinyl)ethoxy.
- 3. The compound of claim 2, wherein X is S, R1 is OH, R2 is OCH3, and R3 is 2-(1-piperidinyl)ethoxy.
- 4. The compound of claim 2, wherein X is S, R1 is OC6H5, R2 is OCH3, and R3 is OH.
- 5. The compound of claim 2, wherein X is S, R1 is OH, R2 is OH, and R3 is OH.
- 6. The compound of claim 2, wherein X is S, R1 is OC6H5, R2 is OCH3, and R3 is 2-(1-piperidinyl)ethoxy.
- 7. The compound of claim 2, wherein X is O, R1 is OC6H5, R2 is OCH3, and R3 is 2-(1-piperidinyl)ethoxy.
- 8. The compound of claim 2, wherein X is O, R1 is OH, R2 is OCH3, and R3 is 2-(1-piperidinyl)ethoxy.
- 9. A one-pot method for preparing a 2-(alkylthio)isoflavone comprising the steps of:
a. providing a mixture of a deoxybenzoin, carbon disulfide, alkyl halide, and tetrabutylammonium hydrogensulfate; b. adding aqueous sodium hydroxide to the mixture while stirring; c. reacting the mixture until the 2-(alkylthio)isoflavone is formed.
- 10. The method of claim 9 wherein the mixture is allowed to stir for about 3 to about 7 hours after the addition of the sodium hydroxide.
- 11. The method of claim 9 further comprising the step of separating the 2-(alkylthio)isoflavone from the reaction mixture.
- 12. The method of claim 11 further comprising the step of purifying the 2-(alkylthio)isoflavone compound.
- 13. A method of prepararing a 2-heterosubstituted 3-aryl-4H-benzopyran-4-one compound comprising the steps of:
a. selecting a 2-(alkylthio)isoflavone; b. optionally protecting potentially reactive groups on the 2-(alkylthio)isoflavone; c. oxidizing the alkylthio group to a alkylsyfonyl group; and d. substituting the alkylsulfonyl group with a heteroalkyl or heteroaryl group to form the 2-heterosubstituted 3-aryl-4H-benzopyran-4-one compound.
- 14. The method of claim 13 wherein the oxidation step is carried out using mCPBA in a polar aprotic solvent under reflux conditions.
- 15. The method of claim 15 wherein the polar aprotic solvent is CH2C2.
- 16. The method of claim 13 wherein alkylsulfonyl group is substituted with a thioaryl group.
- 17. The method of claim 16 further comprising the step of substituting the thioaryl group with an ethylpiperidinyl group to form a 4-[2-(1-piperidinyl)ethoxy]thiophenyl group at the 2-position of the 2-heterosubstituted 3-aryl-4H-benzopyran-4-one compound.
- 18. The method of claim 17 further comprising the step of deprotecting the 2-heterosubstituted 3-aryl-4H-benzopyran-4-one.
- 19. The method of claim 13 further comprising the step of deprotecting the 2-heterosubstituted 3-aryl-4H-benzopyran-4-one.
- 20. A method for treating, inhibiting, or delaying the onset of a cancer in a subject in need of such treatment; the method comprising administering a therapeutically effective amount of compound A:
- 21. The method of claim 20 wherein the cancer is selected from the group consisting of breast cancer, leukemia, non-small cell lung cancer, colon cancer, CNS cancer, melanoma, ovarian cancer, renal cancer, prostate cancer, bladder cancer, and lymphoma.
- 22. The method of claim 20 wherein the cancer is hormone-dependent breast cancer.
- 23. The method of claim 20 wherein the compound suppresses proliferation of human breast cancer cell lines without significantly binding with estrogen receptors (ERs).
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Patent Application No. 60/400,742, filed Aug. 2, 2002, the entirety of which is incorporated herein by reference.
STATEMENT ON FEDERALLY FUNDED RESEARCH
[0002] This work was supported, at least in part, by grants DMAD 17-00-1-0388 and DMAD 17-99-1-9342 from the USAMRMC Breast Cancer Program. The government has certain rights in this invention.
Provisional Applications (1)
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Number |
Date |
Country |
|
60400742 |
Aug 2002 |
US |