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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Triazole tethered C-5-curcuminoid-coumarin based molecular hybrids as novel antitubulin agents: Design, synthesis, biological investigation and docking studies
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Triazole tethered C-5-curcuminoid-coumarin based molecular hybrids as novel antitubulin agents: Design, synthesis, biological investigation and docking studies

机译:基于三唑的C-5-姜黄素-香豆素系分子杂合物作为新型抗微管蛋白剂:设计,合成,生物学研究和对接研究

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摘要

Keeping in view the confines allied with presently accessible antitumor agents and success of C-5-curcuminoid based bifunctional hybrids as novel antitubulin agnets, molecular hybrids of C-5-curcuminoid and coumarin tethered by triazole ring have been synthesized and investigated for in-vitro cytotoxicity against THP-1, COLO-205, HCT-116 and PC-3 human tumor cell lines. The results revealed that the compounds A-2 to A-9, B-2, B-3, B-7 showed significant cytotoxic potential against THP-1, COLO-205 and HCT-116 cell lines, while the PC-3 cell line among these was found to be almost resistant. Structure activity relationship revealed that the nature of Ring X and the length of carbon-bridge (n) connecting triazole ring with coumarin moiety considerably influence the activity. Methoxy substituted phenyl ring as Ring X and two carbon-bridges were found to be the ideal structural features. The most potent compounds (A-2, A-3 and A-7) were further tested for tubulin polymerization inhibition. Compound A-2 was found to significantly inhibit the tubulin polymerization (IC50 = 0.82 mu M in THP-1 tumor cells). The significant cytotoxicity and tubulin polymerization inhibition by A-2 was further rationalized by docking studies where it was docked at the curcumin binding site of tubulin. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:考虑到与目前可获得的抗肿瘤药物相关的局限性以及基于C-5-姜黄素的双功能杂种作为新型抗微管蛋白的成功,已合成了通过三唑环束缚的C-5-姜黄素和香豆素的分子杂种并进行了体外研究对THP-1,COLO-205,HCT-116和PC-3人肿瘤细胞系的细胞毒性。结果表明,化合物A-2至A-9,B-2,B-3,B-7对THP-1,COLO-205和HCT-116细胞系具有明显的细胞毒性,而PC-3细胞发现其中的品系几乎是抗性的。结构活性关系表明,X环的性质以及连接三唑环与香豆素部分的碳桥长度(n)极大地影响了活性。发现甲氧基取代的苯环作为环X和两个碳桥是理想的结构特征。进一步测试了最有效的化合物(A-2,A-3和A-7)对微管蛋白聚合的抑制作用。发现化合物A-2显着抑制微管蛋白聚合(THP-1肿瘤细胞中IC 50 =0.82μM)。通过对接研究进一步合理化了A-2的显着细胞毒性和微管蛋白聚合抑制作用,将其对接在微管蛋白的姜黄素结合位点。 (C)2016 Elsevier Masson SAS。版权所有。

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