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首页> 外文期刊>Journal of Medicinal Chemistry >Structural optimization of 2,5-thiophene amides as highly potent and selective 17β-hydroxysteroid dehydrogenase type 2 inhibitors for the treatment of osteoporosis
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Structural optimization of 2,5-thiophene amides as highly potent and selective 17β-hydroxysteroid dehydrogenase type 2 inhibitors for the treatment of osteoporosis

机译:结构优化的2,5-噻吩酰胺类药物作为治疗骨质疏松症的高效和选择性17β-羟基类固醇脱氢酶2型抑制剂

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摘要

Inhibition of 17β-HSD2 is an attractive mechanism for the treatment of osteoporosis. We report here the optimization of human 17β-HSD2 inhibitors in the 2,5-thiophene amide class by varying the size of the linker (n equals 0 and 2) between the amide moiety and the phenyl group. While none of the phenethylamides (n = 2) were active, most of the anilides (n = 0) turned out to moderately or strongly inhibit 17β-HSD2. The four most active compounds showed an IC_(50) of around 60 nM and a very good selectivity toward 17β-HSD1, 17β-HSD4, 17β-HSD5, 11β-HSD1, 11β-HSD2 and the estrogen receptors α and β. The investigated compounds inhibited monkey 17β-HSD2 moderately, and one of them showed good inhibitory activity on mouse 17β-HSD2. SAR studies allowed a first characterization of the human 17β-HSD2 active site, which is predicted to be considerably larger than that of 17β-HSD1.
机译:抑制17β-HSD2是治疗骨质疏松的诱人机制。我们在这里报告了通过改变酰胺部分和苯基之间的连接基团的大小(n等于0和2)来优化2,5-噻吩酰胺类中的人类17β-HSD2抑制剂。尽管没有一个苯乙酰胺(n = 2)具有活性,但大多数苯甲酸酯(n = 0)却能中等或强烈地抑制17β-HSD2。四种活性最高的化合物的IC_(50)约为60 nM,对17β-HSD1、17β-HSD4、17β-HSD5、11β-HSD1、11β-HSD2以及雌激素受体α和β的选择性非常好。所研究的化合物对猴17β-HSD2有中等程度的抑制作用,其中之一对小鼠17β-HSD2具有良好的抑制活性。 SAR研究允许对人17β-HSD2活性位点进行第一个表征,预计该特征将大大大于17β-HSD1。

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