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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Design, synthesis, biological evaluation and molecular modeling study of novel macrocyclic bisbibenzyl analogues as antitubulin agents
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Design, synthesis, biological evaluation and molecular modeling study of novel macrocyclic bisbibenzyl analogues as antitubulin agents

机译:新型大环苄基苄基类似物的设计,合成,生物学评价与分子造型研究作为抗催糖剂

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摘要

A series of macrocyclic bisbibenzyls with novel skeletons was designed, synthesized, and evaluated for antiproliferative activity against five anthropic cancer cell lines. Among these novel molecules, compound 47 displayed excellent anticancer activity against HeLa, k562, HCC1428, HT29 and PC-3/Doc cell lines, with IC50 values ranging from of 1.51 mu M-5.51 mu M, which were more potent than the parent compound, marchantin C. Compounds 44 and 55 with novel bisbibenzyl skeletons also exhibited significantly improved antiproliferative potency. Structure-activity relationship (SAR) analyses of these synthesized compounds were also performed. In addition, compound 47 effectively inhibited tubulin polymerization in HCC1482 cells and induced HCC1482 cell cycle arrest at the G2/M phase in a concentration-dependent manner. The binding mode of compound 47 to tubulin was also investigated utilizing a molecular docking study. In conclusion, the present study discovered several potent antitubulin compounds with novel bisbibenzyl skeletons, and our systematic studies revealed new scaffolds that target tubulin and mitosis and provide progress towards the discovery of novel antitumor drugs discovery. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:设计了一系列具有新骨架的大环苄苄基,并对五个人类癌细胞系进行抗增殖活性进行设计,合成和评估。在这些新的分子中,化合物47针对Hela,K562,HCC1428,HT29和PC-3 / DOC细胞系显示出优异的抗癌活性,IC50值范围为1.51μm-5.51μm,其比母体化合物更有效,Marchantin C.具有新的双苄基骨骼的化合物44和55,也表现出显着改善的抗增殖效力。还进行了这些合成化合物的结构 - 活性关系(SAR)分析。此外,化合物47有效地抑制了HCC1482细胞中的管蛋白聚合,并以浓度依赖性方式在G2 / M相处诱导HCC1482细胞周期停滞。还利用分子对接研究研究了化合物47至微管蛋白的结合模式。总之,本研究发现了几种具有新的双苄基骨骼的有效的抗胰酶蛋白化合物,我们的系统研究揭示了靶向细胞蛋白和有丝分裂的新支架,并为发现新型抗肿瘤药物发现的进展提供了进展。 (c)2017年Elsevier Masson SAS。版权所有。

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