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E-ring modified steroids as novel potent inhibitors of 17 beta-hydroxysteroid dehydrogenase type 1

机译:E环修饰的类固醇作为17β-羟基类固醇脱氢酶1型的新型有效抑制剂

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17 beta-Hydroxysteroid dehydrogenases (17 beta-HSDs) are an important class of steroidogenic enzymes that regulate the bioavailability of active estrogens and androgens and are as yet a relatively unexploited therapeutic target. Based on our investigations and those of others, E-ring modified steroids were identified as a useful template for the design of inhibitors of 17 beta-HSD type 1, an enzyme involved in the conversion of estrone into estradiol. The synthesis and biological evaluation of a new series of N- and C-substituted 1,3,5(10)-estratrien-[17,16-c]pyrazoles and the corresponding SAR are discussed. Among the N-alkylated analogues, the most potent inhibitor was the 1'-methoxyethyl derivative, 41, with an IC50 of 530 nM in T47-D human breast cancer cells. The X-ray crystal structure of the 1'-isobutyl derivative, 37, was determined. Further optimization of the template using parallel synthesis resulted in a library of C5'-Iinked amides from which 73 emerged. This pyridylethyl amide had an IC50 of 300 nM and its activity, with that of 41, suggests the importance of hydrogen bond acceptor groups in the pyrazole side chain. Both 41 and 73 displayed selectivity over 17 beta-HSD type 2, and preliminary investigations showed 41 to be nonestrogenic in vitro in a luciferase reporter gene assay in contrast to the parent pyrazole 25. Molecular modeling studies, which support these findings, and a QSAR, the predictive power of which was demonstrated, are also presented.
机译:17β-羟基类固醇脱氢酶(17 beta-HSD)是一类重要的类固醇生成酶,可调节活性雌激素和雄激素的生物利用度,并且仍是相对未开发的治疗靶标。根据我们的研究和其他研究,E环修饰的类固醇被确定为设计17β-HSD1型抑制剂的有用模板,该抑制剂涉及雌酮向雌二醇的转化。讨论了一系列新的N-和C-取代的1,3,5(10)-雌三烯-[17,16-c]吡唑类化合物的合成和生物学评估,以及相应的SAR。在N-烷基化类似物中,最有效的抑制剂是1'-甲氧基乙基衍生物41,在T47-D人乳腺癌细胞中的IC50为530 nM。测定了1'-异丁基衍生物37的X射线晶体结构。使用平行合成对模板进行进一步优化,得到了C5'-inked酰胺库,其中出现了73个。该吡啶基乙基酰胺的IC50为300 nM,其活性为41,表明吡唑侧链中氢键受体基团的重要性。 41和73都显示出对17种β-HSD2型的选择性,初步研究表明,与亲代吡唑25相比,荧光素酶报道基因试验中41在体外是非雌激素的。分子模型研究支持了这些发现,并进行了QSAR研究,还展示了其预测能力。

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