首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >A quantitative structure-activity relationship study on a novel class of calcium-entry blockers: 1-((4-(aminoalkoxy)phenyl)sulphonyl)indolizines.
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A quantitative structure-activity relationship study on a novel class of calcium-entry blockers: 1-((4-(aminoalkoxy)phenyl)sulphonyl)indolizines.

机译:一类新型的钙进入阻滞剂:1-((4-(氨基烷氧基)苯基)磺酰基)吲哚嗪酮的定量构效关系研究。

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摘要

A quantitative structure-activity relationship (QSAR) study has been made on two different series of 1-[(4-(aminoalkoxy)phenyl)sulphonyl]indolizines acting as calcium entry blockers, using some physicochemical and structural parameters. Two different assays were reported for both the series: (IC(50))(A), referring to the molar concentration of the compound required to reduce [3H] nitrendipine binding by 50%, and (IC(50))(B), referring to that required to block Ca(2+) induced concentration of K(+) depolarised rat aorta by 50%. For series 1, where the 2-position substituents of indolizine ring were varied along with the aminoalkoxy moieties of the phenyl ring, the QSAR analysis shows that the 2-position substituents can equally affect both the activities through their hydrophobic and electronic properties and the aminoalkoxy moiety through some steric effects. For series 2, where the indolizine ring has been replaced by varying heterocyclic rings, along with the changes in aminoalkoxy moiety of the phenyl ring, the QSAR exhibits that these different heterocyclic rings affect both the activities through some steric roles, altering the conformations of the receptors from system A to system B. Among the different heterocyclic rings, the N-substituted indole ring is shown to be more conducive to both the activities than any other ring. However, a 5-membered ring is indicated to be less effective than a 9- or 10-membered ring for activity B. Additionally, the amino moieties having phenyl ring with methoxy groups at 3,4,and 5-positions are shown to favour both A and B activities.
机译:使用一些理化和结构参数,对两个不同系列的1-[((4-(氨基烷氧基)苯基)磺酰基]吲哚嗪酮作为钙进入阻滞剂)进行了定量构效关系研究。对于这两个系列,报告了两种不同的测定方法:(IC(50))(A),指将[3H]尼群地平结合降低50%所需的化合物的摩尔浓度,和(IC(50))(B) ,指的是阻止50%Ca(2+)诱导的K(+)去极化大鼠主动脉浓度的作用。对于系列1,其中吲哚嗪环的2位取代基随苯环的氨基烷氧基部分而变化,QSAR分析表明,2位取代基可通过其疏水和电子特性以及氨基烷氧基同等地影响活性通过一些空间效应。对于系列2,其中吲哚嗪环已被各种杂环取代,同时苯环的氨基烷氧基部分也发生了变化,QSAR显示这些不同的杂环通过某些空间作用影响两种活性,从而改变了其构象。在不同的杂环中,N-取代的吲哚环比任何其他环都更有利于两种活性。但是,表明5元环对活性B的效果不如9元或10元环。另外,具有苯环且在3,4和5位带有甲氧基的氨基部分显示出有利的活性。 A和B活动。

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