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5α-雄甾烷-3α,17β-二醇的16α-衍生物作为抗雄激素的化学合成及生物活性

Chemical synthesis and biological activities of 16alpha-derivatives of 5alpha-androstane-3alpha,17beta-diol as antiandrogens.

作者信息

Roy Jenny, Breton Rock, Martel Céline, Labrie Fernand, Poirier Donald

机构信息

Medicinal Chemistry Division, Oncology and Molecular Endocrinology Research Center, Centre Hospitalier Universitaire de Québec (CHUQ), Pavillon CHUL and Université Laval, Que., Canada G1V 4G2.

出版信息

Bioorg Med Chem. 2007 Apr 15;15(8):3003-18. doi: 10.1016/j.bmc.2007.02.007. Epub 2007 Feb 13.

Abstract

In our efforts to develop compounds with therapeutic potential as antiandrogens, we synthesized a series of 5alpha-androstane-3alpha,17beta-diol derivatives with a fixed side-chain length of 3-methylenes at C-16alpha, but bearing a diversity of functional groups at the end. Among these, the chloride induced the best antiproliferative activity on androgen-sensitive Shionogi cells. Substituting the OH at C-3 by a methoxy group showed the importance of the OH. Moreover, its transformation into a ketone increased the androgen receptor (AR) binding but decreased the antiproliferative activity and induced a proliferative effect on Shionogi cells. These results confirm the importance of keeping a 5alpha-androstane-3alpha,17beta-diol nucleus instead of a dihydrotestosterone nucleus. Variable side-chain lengths of 2-, 3-, 4-, and 6-methylenes at C-16alpha were investigated and the optimal length was found to be 3-methylenes. Although exhibiting a weak AR binding affinity, 16alpha-(3'-chloropropyl)-5alpha-androstane-3alpha,17beta-diol (15) provided an antiproliferative activity on Shionogi cells similar to that of pure non-steroidal antiandrogen hydroxy-flutamide (77% and 67%, respectively, at 0.1 microM). The new steroidal compound, 15, thus constitutes a good starting point for development of future antiandrogens with a therapeutic potential against prostate cancer.

摘要

在我们开发具有抗雄激素治疗潜力化合物的过程中,我们合成了一系列5α-雄甾烷-3α,17β-二醇衍生物,其在C-16α处具有固定的3个亚甲基侧链长度,但末端带有多种官能团。其中,氯化物对雄激素敏感的狮王细胞诱导出最佳的抗增殖活性。用甲氧基取代C-3处的羟基表明了羟基的重要性。此外,将其转化为酮会增加雄激素受体(AR)结合,但会降低抗增殖活性,并对狮王细胞诱导出增殖作用。这些结果证实了保留5α-雄甾烷-3α,17β-二醇核而不是二氢睾酮核的重要性。研究了C-16α处2-、3-、4-和6个亚甲基的可变侧链长度,发现最佳长度为3个亚甲基。尽管16α-(3'-氯丙基)-5α-雄甾烷-3α,17β-二醇(15)表现出较弱的AR结合亲和力,但它对狮王细胞的抗增殖活性与纯非甾体抗雄激素羟基氟他胺相似(在0.1 microM时分别为77%和67%)。因此,新的甾体化合物15构成了开发未来具有治疗前列腺癌潜力的抗雄激素药物的良好起点。

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