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苯并咪唑衍生物的细胞周期阻滞和诱导细胞凋亡的能力:设计、合成、对接和生物学评价。

Cell Cycle Arrest and Apoptosis-Inducing Ability of Benzimidazole Derivatives: Design, Synthesis, Docking, and Biological Evaluation.

机构信息

Department of Chemistry, Faculty of Science, Al-Baha University, Al-Baha 65799, Saudi Arabia.

Department of Chemistry, Faculty of Science, Taif University, Taif 21974, Saudi Arabia.

出版信息

Molecules. 2022 Oct 14;27(20):6899. doi: 10.3390/molecules27206899.

Abstract

In the current study, new benzimidazole-based 1,3,4-oxadiazole derivatives have been synthesized and characterized by NMR, IR, MS, and elemental analysis. The final compounds were screened for cytotoxicity against MDA-MB-231, SKOV3, and A549 cell lines and EGFR for inhibitory activities. Compounds and were found to be the most active against all the tested cell lines, comparable to doxorubicin, and exhibited significant inhibition on EGFR kinase, with IC 0.33 and 0.38 μM, respectively, comparable to erlotinib (IC 0.39 μM). Furthermore, these two compounds effectively suppressed cell cycle progression and induced cell apoptosis in MDA-MB-231, SKOV3, and A549 cell lines. The docking studies revealed that these compounds showed interactions similar to erlotinib at the EGFR site. It can be concluded that the synthesized molecules effectively inhibit EGFR, can arrest the cell cycle, and may trigger apoptosis and therefore, could be used as lead molecules in the development of new anticancer agents targeting EGFR kinase.

摘要

在当前的研究中,我们合成了新的基于苯并咪唑的 1,3,4-噁二唑衍生物,并通过 NMR、IR、MS 和元素分析进行了表征。最终的化合物对 MDA-MB-231、SKOV3 和 A549 细胞系和 EGFR 的细胞毒性进行了筛选,并对其抑制活性进行了研究。化合物 和 对所有测试的细胞系表现出最强的活性,与多柔比星相当,并对 EGFR 激酶表现出显著的抑制作用,IC 0.33 和 0.38 μM,与厄洛替尼(IC 0.39 μM)相当。此外,这两种化合物有效地抑制了 MDA-MB-231、SKOV3 和 A549 细胞系的细胞周期进展并诱导细胞凋亡。对接研究表明,这些化合物在 EGFR 位点与厄洛替尼表现出相似的相互作用。可以得出结论,合成的分子有效地抑制了 EGFR,可以阻止细胞周期,并可能触发细胞凋亡,因此,它们可以用作针对 EGFR 激酶的新型抗癌药物开发的先导分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0637/9607330/2eb775aa922c/molecules-27-06899-g001.jpg

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