IP Library Granted Patent US 8,637,706
Granted Patent B2
US 8,637,706 · App. 13/362,242 · Granted Jan 28, 2014

Nuclear receptor binding agents

Inventors: James T. Dalton (Lakeland, TN); Christina Barrett (Oakland, TN); Duane D. Miller (Germantown, TN); Seoung-Soo Hong (Collierville, TN); Yali He (Germantown, TN); Michael L. Mohler (Memphis, TN); Ramesh Narayanan (Cordova, TN); Zhongzhi Wu (Collierville, TN)
Assignee: Gtx, Inc.
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Quick Facts
Patent No.
US 8,637,706
App. No.
13/362,242
Granted
Jan 28, 2014
Kind
B2
Abstract

The present invention relates to a novel class of selective estrogen receptor modulators (SERMs). The SERM compounds are applicable for use in the prevention and/or treatment of a variety of diseases and conditions including prevention and treatment of cancers such as prostate and breast cancer, osteoporosis, hormone-related diseases, hot flashes or vasomotor symptoms, neurological disorders, cardiovascular disease and obesity.

Claims (41)

1. A nuclear receptor binding agent (NRBA) compound or its isomer, pharmaceutically acceptable salt, ester, or any combination thereof, represented by the structure of formula VI:

wherein

X is CO;

R 1 and R 3 , are independently halogen, —CHO, —CHNOH, CH═CHCO 2 H, hydroxyalkyl group of 1 to 7 carbon atoms, hydroxyl, alkoxy group of 1 to 7 carbon atoms, cyano, CF 3 , NH 2 , NHR, NHCOR, sulfonamide, SO 2 R, aryl or protected hydroxyl;

R 2 is —CHO, —CHNOH, CH═CHCO 2 H, hydroxyalkyl, hydroxyl, alkoxy, cyano, CF 3 , NH 2 , NHR, NHCOR, sulfonamide, SO 2 R, aryl, or protected hydroxyl;

R 8 , R 9 , and R 10 are independently hydrogen, halogen, CHO, CHNOH, CH═CHCO 2 H, hydroxyalkyl group of 1 to 7 carbon atoms, hydroxyl, alkoxy group of 1 to 7 carbon atoms, cyano, CF 3 , NH 2 , NHR, NHCOR, sulfonamide, SO 2 R, aryl, or protected hydroxyl;

R is alkyl group of 1 to 7 carbon atoms, hydrogen, haloalkyl group of 1 to 7 carbon atoms, dihaloalkyl group of 1 to 7 carbon atoms, trihaloalkyl group of 1 to 7 carbon atoms, CH 2 F, CHF 2 , CF 3 , CF 2 CF 3 , aryl, phenyl, halogen, alkenyl group of 1 to 7 carbon atoms, CN, NO 2 , or OH; and

j, k, l are independently 1-4.

2. The nuclear receptor binding agent (NRBA) of claim 1 wherein said pharmaceutically acceptable salt is an HCl salt.

3. The nuclear receptor binding agent (NRBA) compound of claim 2 wherein said pharmaceutically acceptable salt is a chloride, phosphate, acetate, oxalate, tartrate, mandelate, citrate, sodium, potassium, ammonium, calcium, ferric hydroxides, isopropylamine, trimethylamine, 2-ethylaminoethanol, histidine, or procaine.

4. A nuclear receptor binding agent (NRBA) compound of claim 1 , wherein said compound is:

4-hydroxy-N-(4-hydroxyphenyl)-N-(4-fluorophenyl)-benzamide (3m);

4-fluoro-3-hydroxy-N,N-bis(4-hydroxyphenyl)-benzamide (10g);

3-fluoro-4-hydroxy-N,N-bis(4-hydroxyphenyl)-benzamide (10k); and

4-fluoro-N,N-bis(4-hydroxyphenyl)-2-(trifluoromethyl)-benzamide (11x).

5. A pharmaceutical composition comprising the nuclear receptor binding agent (NRBA) compound of claim 1 or its pharmaceutically acceptable salt, and a suitable carrier or diluent.

6. A method of binding the nuclear receptor binding agent (NRBA) of claim 1 to an estrogen receptor or an estrogen related receptor, comprising the step of contacting an estrogen receptor with said NRBA.

7. A method of treating or reducing the severity of osteoporosis in a subject, the method comprising administering a composition comprising the nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

8. A method of treating or reducing the risk of mortality from cardiovascular disease in a subject, the method comprising administering a composition comprising the nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

9. A method of improving a lipid profile in a subject, the method comprising administering a pharmaceutical composition comprising the nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

10. A method of reducing the incidence of, inhibiting, suppressing, or treating androgen-deprivation induced osteoporosis, bone fractures and/or loss of bone mineral density (BMD) in men having prostate cancer, the method comprising administering a pharmaceutical composition comprising the nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt, or any combination thereof to a male subject in need, having prostate cancer.

11. A method of ameliorating symptoms and/or clinical complications associated with menopause in a female subject, the method comprising administering a pharmaceutical composition comprising the nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to a female menopausal subject.

12. A method of treating or reducing the severity of Alzheimer's disease in a subject, the method comprising administering a pharmaceutical composition comprising the nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

13. A method of treating, suppressing, inhibiting, or reducing the incidence of hot flashes, gynecomastia, and/or hair loss in a male subject having prostate cancer, the method comprising administering a pharmaceutical composition comprising the nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

14. A method of treating, suppressing, inhibiting or reducing the risk of developing prostate cancer in a subject, the method comprising administering a pharmaceutical composition comprising the nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt, to said subject.

15. A method of treating, suppressing, inhibiting or reducing the amount of precancerous precursors of prostate adenocarcinoma lesions in a subject, the method comprising administering a pharmaceutical composition comprising the nuclear receptor binding agent (NRBA) compound of claim 1 or its pharmaceutically acceptable salt to said subject.

16. A method of claim 15 , wherein said precancerous precursors of prostate adenocarcinoma is prostate intraepithelial neoplasia (PIN).

17. A method of treating, preventing, inhibiting or reducing the incidence of inflammation in a subject, comprising administering a pharmaceutical composition comprising a nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

18. A method of treating, inhibiting or reducing the risk of breast cancer in a subject, comprising administering a pharmaceutical composition comprising a nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

19. A method of treating, inhibiting or reducing the risk of endometrial cancer in a subject, comprising administering a pharmaceutical composition comprising a nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

20. A method of treating, inhibiting or reducing the risk of bladder cancer in a subject, comprising administering a pharmaceutical composition comprising a nuclear receptor binding agent (NRBA) compound of claim 1 or its pharmaceutically acceptable salt to said subject.

21. A method of treating, inhibiting or reducing the risk of colon cancer in a subject, comprising administering a pharmaceutical composition comprising a nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

22. A method of treating, inhibiting or reducing the risk of leukemia in a subject, comprising administering a pharmaceutical composition comprising a nuclear receptor binding agent (NRBA) of claim 1 or its pharmaceutically acceptable salt to said subject.

23. A method of reducing circulating lipid levels in a male subject with prostate cancer having undergone Androgen Deprivation Therapy (ADT), said method comprising administering to said subject a composition comprising a nuclear receptor binding agent (NRBA) compound of claim 1 or its pharmaceutically acceptable salt.

24. The method of claim 23 , wherein said lipid levels, which are reduced comprise a triglyceride, low density lipoprotein (LDL) cholesterol, or a combination thereof.

25. The method of claim 23 , wherein said method comprises increasing circulating levels of high density lipoprotein (HDL) cholesterol in said subject.

26. The method of claim 23 , wherein said method further comprises reducing the ratio of total circulating cholesterol levels to high density lipoprotein (HDL) levels in said subject.

27. The method of claim 23 , wherein said subject further suffers from atherosclerosis and its associated diseases, premature aging, Alzheimer's disease, stroke, toxic hepatitis, viral hepatitis, peripheral vascular insufficiency, renal disease, hyperglycemia, or any combination thereof.

28. A method of treating atherosclerosis and its associated diseases including cardiovascular disorders, cerebrovascular disorders, peripheral vascular disorders, and intestinal vascular disorders in a subject with prostate cancer having undergone Androgen Deprivation Therapy (ADT), comprising administering to said subject a composition comprising a nuclear receptor binding agent (NRBA) compound of claim 1 or its pharmaceutically acceptable salt.

29. A method of treating ischemia in a tissue of a subject with prostate cancer having undergone Androgen Deprivation Therapy (ADT), comprising administering to said subject a composition comprising a nuclear receptor binding agent (NRBA) compound of claim 1 or its pharmaceutically acceptable salt.

30. A method of treating bone loss in a subject, the method comprising administering to said subject a composition comprising a nuclear receptor binding agent (NRBA) compound of claim 1 or its pharmaceutically acceptable salt.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2012
From: DALTON, JAMES T.; BARRETT, CHRISTINA; MILLER, DUANE D.; HONG, SEOUNG-SOO; HE, YALI; MOHLER, MICHAEL L.; NARAYANAN, RAMESH; WU, ZHONGZHI
To: GTX, INC.
Reel/Frame 027903/0215 →
Continuity (4)
Continuation In Part 11785251 · Apr 16, 2007
Continuation In Part 11604884 · Nov 28, 2006
Provisional Application 60739898 · Nov 28, 2005
Related Publication 20120157539A1 · Jun 21, 2012