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苯并咪唑衍生物作为微管聚合抑制剂的设计、合成及体外细胞毒性研究。

Benzimidazole derivatives as tubulin polymerization inhibitors: Design, synthesis and in vitro cytotoxicity studies.

机构信息

Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research (NIPER), Hyderabad 500037, India.

Department of Biological Sciences, National Institute of Pharmaceutical Education and Research (NIPER), Hyderabad 500037, India.

出版信息

Bioorg Med Chem Lett. 2023 Nov 15;96:129494. doi: 10.1016/j.bmcl.2023.129494. Epub 2023 Oct 3.

Abstract

A new class of benzimidazole derivatives as tubulin polymerization inhibitors has been designed and synthesized in this study. The in vitro anticancer profile of the developed molecules was reconnoitred on selected human cancer cells. The highest cytotoxicity was illustrated by compounds 7n and 7u with IC values ranging from 2.55 to 17.89 µM with specificity toward SK-Mel-28 cells. They displayed 5-fold less cytotoxicity towards normal rat kidney epithelial NRK52E cells, which implies that they are not harmful to normal, healthy cells. The cellular staining procedures like AO/EB, DCFDA, and DAPI were applied to comprehend the inherent mechanism of apoptosis which displayed nuclear and morphological alterations. The Annexin V binding and JC-1 studies were executed to evaluate the extent of apoptosis and the decline in mitochondrial transmembrane potential in SK-Mel-28 cell lines. Compound 7n dose-dependently arrested the G2/M phase of the cell cycle and the target-based outcomes proposed tubulin polymerization inhibition by 7n (IC of 5.05±0.13 μM). Computational studies were also conducted on the tubulin protein (PDB ID: 3E22) to investigate the stabilized binding interactions of compounds 7n and 7u with tubulin, respectively.

摘要

本研究设计并合成了一类新型苯并咪唑衍生物作为微管聚合抑制剂。所开发分子的体外抗癌谱在选定的人类癌细胞上进行了侦察。化合物 7n 和 7u 的细胞毒性最高,IC 值范围为 2.55 至 17.89 µM,对 SK-Mel-28 细胞具有特异性。它们对正常大鼠肾上皮 NRK52E 细胞的细胞毒性低 5 倍,这意味着它们对正常健康细胞没有危害。应用 AO/EB、DCFDA 和 DAPI 等细胞染色程序来理解细胞凋亡的内在机制,显示核和形态改变。进行 Annexin V 结合和 JC-1 研究,以评估 SK-Mel-28 细胞系中凋亡的程度和线粒体跨膜电位的下降。化合物 7n 剂量依赖性地阻滞细胞周期的 G2/M 期,基于靶点的结果表明 7n 抑制微管聚合(IC 为 5.05±0.13 μM)。还对微管蛋白(PDB ID:3E22)进行了计算研究,以分别研究化合物 7n 和 7u 与微管的稳定结合相互作用。

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