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16-甲酰基-17-甲氧基脱氢表雄酮衍生物酯作为2型5α-还原酶抑制剂的合成及生物学评价

Synthesis and biological evaluation of esters of 16-formyl-17-methoxy-dehydroepiandrosterone derivatives as inhibitors of 5α-reductase type 2.

作者信息

Sánchez-Márquez Araceli, Arellano Yazmín, Bratoeff Eugene, Heuze Yvonne, Córdova Karen, Nieves Gladys, Soriano Juan, Cabeza Marisa

机构信息

a Departamento de Sistemas Biológicos y de Producción Agrícola y Animal , Universidad Autónoma Metropolitana-Xochimilco , México, D.F. , México .

b Departamento de Farmacia , Facultad de Química, Universidad Nacional Autónoma de México , México, D.F. , México , and.

出版信息

J Enzyme Inhib Med Chem. 2016 Dec;31(6):1170-6. doi: 10.3109/14756366.2015.1103235. Epub 2015 Nov 2.

Abstract

In this study, we investigated the in vitro effect of 16-formyl-17-methoxy dehydroepiandrosterone derivatives on the activity of 5α-reductase type 2 (5α-R2) obtained from human prostate. The activity of different concentrations of these derivatives was determined for the conversion of labelled testosterone to dihydrotestosterone. The results indicated that an aliphatic ester moiety at the C-3 position of these derivatives increases their in vitro potency as inhibitors of 5α-R2 activity compared to finasteride®, which is considered to be a potent inhibitor of 5α-R2. In this case, the augmentation of the lipophilicity of these dehydroepiandrosterone derivatives increased their potency as inhibitors of 5α-R2. However, the presence of cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl or cycloheptyl rings as the cycloaliphatic ester moiety at C-3 of the formyl methoxy dehydroepiandrosterone scaffold did not inhibit the activity of this enzyme. This may be due to the presence of steric factors between the enzyme and the spatial structure of these derivatives.

摘要

在本研究中,我们研究了16-甲酰基-17-甲氧基脱氢表雄酮衍生物对从人前列腺中获得的2型5α-还原酶(5α-R2)活性的体外影响。测定了这些衍生物不同浓度下将标记的睾酮转化为二氢睾酮的活性。结果表明,与被认为是5α-R2强效抑制剂的非那雄胺相比,这些衍生物C-3位的脂肪族酯部分增加了它们作为5α-R2活性抑制剂的体外效力。在这种情况下,这些脱氢表雄酮衍生物亲脂性的增强提高了它们作为5α-R2抑制剂的效力。然而,在甲酰基甲氧基脱氢表雄酮骨架的C-3位存在环丙基、环丁基、环戊基、环己基或环庚基环作为脂环族酯部分时,并未抑制该酶的活性。这可能是由于酶与这些衍生物空间结构之间存在空间因素。

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