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首页> 外文期刊>Journal of Medicinal Chemistry >17 alpha-O-(aminoalkyl)oxime derivatives of 3 beta,14 beta-dihydroxy-5 beta-androstane and 3 beta-hydroxy-14-oxoseco-D-5 beta-androstane as inhibitors of Na(+),K(+)-ATPase at the digitalis receptor.
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17 alpha-O-(aminoalkyl)oxime derivatives of 3 beta,14 beta-dihydroxy-5 beta-androstane and 3 beta-hydroxy-14-oxoseco-D-5 beta-androstane as inhibitors of Na(+),K(+)-ATPase at the digitalis receptor.

机译:3个beta,14个beta-dihydroxy-5 beta-雄烷和3个beta-hydroxy-14-oxoseco-D-5 beta-雄烷的17种α-O-(氨基烷基)肟衍生物作为Na(+),K(+ )洋地黄受体处的-ATP酶。

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摘要

The synthesis and binding affinities to the digitalis Na(+),K(+)-ATPase receptor of a series of 3 beta,14 beta-dihydroxy-5 beta-androstane and 3 beta-hydroxy-14-oxoseco-D-5 beta-androstane derivatives bearing a 17 alpha-(aminoalkoxy)imino chain are reported; some derivatives were also studied for their inotropic activity. Our recently proposed model of interaction of molecules with the digitalis receptor was used to design these compounds. On that basis, the possibility to design novel potent inhibitors of Na(+),K(+)-ATPase without being constrained by the stereochemistry of the classical digitalis skeleton in the D-ring region was predicted. The binding affinities of the most potent compounds in the two series, (EZ)-17 alpha-[2-[(2-aminoethoxy)imino]ethyl]-5 beta-androstane-3 beta,14 beta-diol (6f) and (EZ)-3 beta-hydroxy-17 alpha-[2-[(2-aminoethoxy)imino]ethyl]-14,15-seco-5 beta-androstan-14-one (24c) are higher than that of the potent natural compound digitoxigenin, despite the unusual alpha-exit of the substituent in position 17 of 6f or the disruption of the D-ring in 24c. These results further support the validity of our recently proposed model of binding at the digitalis receptor. Results of the inotropic tests on guinea pig atrium deserve further investigation on the pharmacological profile of these derivatives.
机译:一系列的3 beta,14 beta-dihydroxy-5 beta-雄甾烷和3 beta-hydroxy-14-oxoseco-D-5 beta的洋地黄Na(+),K(+)-ATPase受体的合成和结合亲和力报道了带有17个α-(氨基烷氧基)亚氨基链的-雄甾烷衍生物。还研究了一些衍生物的正性肌力。我们最近提出的分子与洋地黄受体相互作用的模型被用来设计这些化合物。在此基础上,预测了设计新型有效的Na(+),K(+)-ATPase抑制剂不受D环区域经典洋地黄骨架的立体化学约束的可能性。这两个系列中最有效的化合物的结合亲和力(EZ)-17α-[2-[(2-氨基乙氧基)亚氨基]乙基] -5β-雄烷-3β,14β-二醇(6f)和(EZ)-3 beta-hydroxy-17 alpha- [2-[(2-aminoethoxy)imino] ethyl] -14,15-seco-5 beta-androstan-14-one(24c)高于强效天然化合物洋地黄毒苷,尽管6f的17位取代基出现了异常的α-出口或24c中的D环被破坏。这些结果进一步支持了我们最近提出的洋地黄受体结合模型的有效性。豚鼠心房的肌力测试结果值得进一步研究这些衍生物的药理特性。

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