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氟扫描对微管蛋白聚合抑制剂 combretastatin A-4 的研究:设计、合成、分子建模和生物学评价。

A fluorine scan of a tubulin polymerization inhibitor isocombretastatin A-4: Design, synthesis, molecular modelling, and biological evaluation.

机构信息

BioCIS, Equipe Labellisée Ligue Contre le Cancer, Univ. Paris-Sud, CNRS, University Paris-Saclay, F-92290, Châtenay Malabry, France.

Institut de Chimie des Substances Naturelles, UPR 2301, CNRS, F-91198, Gif sur Yvette, France.

出版信息

Eur J Med Chem. 2018 Jan 1;143:473-490. doi: 10.1016/j.ejmech.2017.11.055. Epub 2017 Dec 2.

Abstract

A novel series of tubulin polymerization inhibitors, based on fluorinated derivatives of isocombretastatin A-4 was synthesized with the goal of evaluating the effect of these compounds on the proliferative activity. The introduction of fluorine atom was performed on the phenyl ring or at the linker between the two aromatic rings. The modification of isoCA-4 by introduction of difluoromethoxy group at the para-position (3i) and substitution of the two protons of the linker by two fluorine atoms (3m), produced the most active compounds in the series, with IC values of 0.15-2.2 nM (3i) and 0.1-2 nM (3m) respectively, against a panel of six cancer cell lines. Compounds 3i and 3m had greater antiproliferative activity in comparison with references CA-4 or isoCA-4, the presence of fluorine group leads to a significant enhancement of the antiproliferative activity. Molecular docking studies indicated that compounds 3i and 3m occupy the colchicine binding site of tubulin. Evaluation of cytotoxicity in Human noncancer cells indicated that the compounds 3i and 3m were practically ineffective in quiescent peripheral blood lymphocytes, and may have a selective antiproliferative activity against cancer cells. Analyses of cell cycle distribution, and morphological microtubules organization showed that compound 3m induced G/M phase arrest and, dramatically disrupted the microtubule network.

摘要

一种新型的微管聚合抑制剂系列,基于异康布他汀 A-4 的氟化衍生物合成,目的是评估这些化合物对增殖活性的影响。在苯环上或在两个芳环之间的连接键上引入氟原子。在异 CA-4 的对位引入二氟甲氧基(3i)和用两个氟原子取代连接键的两个质子(3m)的修饰,产生了该系列中最活跃的化合物,对一组六种癌细胞系的 IC 值分别为 0.15-2.2 nM(3i)和 0.1-2 nM(3m)。与参考 CA-4 或异 CA-4 相比,化合物 3i 和 3m 的抗增殖活性更强,氟基团的存在导致抗增殖活性显著增强。分子对接研究表明,化合物 3i 和 3m 占据微管的秋水仙碱结合位点。在人非癌细胞中的细胞毒性评估表明,化合物 3i 和 3m 在静止外周血淋巴细胞中几乎无效,并且可能对癌细胞具有选择性的抗增殖活性。细胞周期分布和形态微管组织分析表明,化合物 3m 诱导 G2/M 期阻滞,并显著破坏微管网络。

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