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Synthesis of tricyclic compounds as steroid 5alpha-reductase inhibitors.

机译:合成三环化合物作为类固醇5α-还原酶抑制剂。

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摘要

A series of 4-phenoxybutyric acid derivatives attached to a tricyclic skeleton were prepared and evaluated as 5alpha-reductase inhibitors. Structure activity relationships for these compounds in terms of rat epididymis (type 2) 5alpha-reductase inhibitory activities reveal that 1) the substitution pattern at the 11-position of dibenz[b,e]oxepin influenced potency, 2) higher lipophilicity of the tricyclic skeleton improved potency, whereas the existence of a basic nitrogen atom in this skeleton was detrimental to potency, and 3) isobutyl substitution at the 8 positon of the azepine skeleton was tolerated. Among the tricyclic compounds studied, 4-[3-[5-benzyl-8-(2-methyl)propyl-10,11-dihydrodibenz[b,f]azepine- 2-carboxamido]phenoxy]butyric acid (26) was the most potent inhibitor of rat type 2 5alpha-reductase at 0.1 microM.
机译:制备了一系列与三环骨架相连的4-苯氧基丁酸衍生物,并将其作为5α-还原酶抑制剂进行了评估。就大鼠附睾(2型)5α-还原酶抑制活性而言,这些化合物的结构活性关系显示:1)dibenz [b,e] oxepin 11位的取代模式影响药效; 2)三环的亲脂性更高骨架提高了效力,而该骨架中碱性氮原子的存在不利于效力,并且3)容忍了氮杂环庚烷骨架第8位的异丁基取代。在研究的三环化合物中,4- [3- [5-苄基-8-(2-甲基)丙基-10,11-二氢二苯并[b,f]氮杂-2-2-羧酰胺基]苯氧基]丁酸(26)是大鼠2型5α-还原酶的最有效抑制剂,浓度为0.1 microM。

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