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新型喹啉基-二苯乙烯衍生物作为潜在抗癌剂的合成与生物评价

Synthesis and bio-evaluation of novel quinolino-stilbene derivatives as potential anticancer agents.

作者信息

Srivastava Vandana, Lee Hoyun

机构信息

Advanced Medical Research Institute of Canada, Health Sciences North, 41 Ramsey Lake Road, Sudbury, Ontario P3E 5J1, Canada; Division of Medical Sciences, Northern Ontario School of Medicine, 935 Ramsey Lake Road, Sudbury, Ontario P3E 2C6, Canada.

Advanced Medical Research Institute of Canada, Health Sciences North, 41 Ramsey Lake Road, Sudbury, Ontario P3E 5J1, Canada; Division of Medical Sciences, Northern Ontario School of Medicine, 935 Ramsey Lake Road, Sudbury, Ontario P3E 2C6, Canada; Department of Medicine, The University of Ottawa, Ottawa, Ontario K1H 5M8, Canada.

出版信息

Bioorg Med Chem. 2015 Dec 15;23(24):7629-40. doi: 10.1016/j.bmc.2015.11.007. Epub 2015 Nov 7.

Abstract

A series of 25 novel quinolino-stilbene derivatives were designed, synthesized and evaluated for their potential as anticancer agents. Three of them not only displayed quite potent antiproliferative activity with IC50 values<4μM but also showed approximately twofold selectivity against cancer cells, compared to non-cancerous cells. Three other compounds exhibited comparatively good activity with IC50 values in the range of 4-10μM, and the rest was moderately active or inactive. One of these viz. 3-[E-(4-fluorostyryl)]-2-chloroquinoline (compound 7B) caused substantial DNA damage and arrested cell cycle in S phase. Interestingly, 7B was very active against MDA-MB468 (IC50=0.12μM), but not against other cell lines examined. Compound 3-[Z-(3-(trifluoromethyl)styryl)]-2-chloroquinoline (12A), the most effective against all cancer cell lines examined, caused prolonged cell cycle arrest at mitosis and eventually apoptosis. Data from an in vitro study showed that compound 12A inhibited microtubule polymerization in a similar fashion to nocodazole. Further study using in silico molecular modeling revealed that 12A causes the impediment of microtubule polymerization by binding to tubulin at the same cavity where podophyllotoxin binds.

摘要

设计、合成了一系列25种新型喹啉 - 芪衍生物,并对其作为抗癌剂的潜力进行了评估。其中三种不仅表现出相当强的抗增殖活性,IC50值<4μM,而且与非癌细胞相比,对癌细胞表现出约两倍的选择性。另外三种化合物表现出相对较好的活性,IC50值在4 - 10μM范围内,其余的活性中等或无活性。其中之一即3 - [E - (4 - 氟苯乙烯基)] - 2 - 氯喹啉(化合物7B)导致大量DNA损伤并使细胞周期停滞在S期。有趣的是,7B对MDA - MB468非常有效(IC50 = 0.12μM),但对其他检测的细胞系无效。化合物3 - [Z - (3 - (三氟甲基)苯乙烯基)] - 2 - 氯喹啉(12A)对所有检测的癌细胞系最有效,导致有丝分裂期细胞周期长时间停滞并最终凋亡。体外研究数据表明,化合物12A以与诺考达唑类似的方式抑制微管聚合。使用计算机分子建模的进一步研究表明,12A通过与鬼臼毒素结合的同一腔室中的微管蛋白结合来阻碍微管聚合。

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