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新型噻唑烷酮-苯甲酸酯支架作为表皮生长因子受体抑制剂、细胞周期阻断剂及诱导HepG2细胞凋亡的设计、合成、抗癌评估及分子模拟研究

Design, Synthesis, Anticancer Evaluation and Molecular Modeling Studies of New Thiazolidinone-Benzoate Scaffold as EGFR Inhibitors, Cell Cycle Interruption and Apoptosis Inducers in HepG2.

作者信息

Magdy Eldaly Salwa, Salama Zakaria Dalia, Hanafy Metwally Nadia

机构信息

Department of Chemistry, Faculty of Science, Cairo University, 12613, Giza, Egypt.

出版信息

Chem Biodivers. 2023 Oct;20(10):e202300138. doi: 10.1002/cbdv.202300138. Epub 2023 Sep 11.

Abstract

Synthesis of new anticancer candidates with protein kinases inhibitory potency is a major goal of pharmaceutical science and synthetic research. This current work represents the synthesis of a series of substituted benzoate-thiazolidinones. Most prepared thiazolidinones were evaluated in vitro for their potential anticancer activity against three cell lines by MTT assay, and they found to be more effective against cancer cell lines with no harm toward normal cells. Thiazolidinones 5 c and 5 h were further evaluated to be kinase inhibitors against EGFR showing effective inhibitory impact (with IC value; 0.2±0.009 and 0.098±0.004 μM, for 5 c and 5 h, respectively). Furthermore, 5 c and 5 h have effects on cell cycle and apoptosis induction capability in HepG2 cell lines by DNA-flow cytometry analysis and annexin V-FITC apoptosis assay, respectively. The results showed that they have effect of disrupting the cell cycle and causing cell mortality by apoptosis in the treated cells. Moreover, molecular docking studies showed better binding patterns for 5 c and 5 h with the active site of the epidermal growth factor receptor (EGFR) protein kinase (PDB code 1M17). Finally, toxicity risk and physicochemical characterization by Osiris method was performed on most of the compounds, revealing excellent properties as possible drugs.

摘要

合成具有蛋白激酶抑制活性的新型抗癌候选物是药物科学和合成研究的主要目标。当前这项工作展示了一系列取代苯甲酸酯 - 噻唑烷酮的合成。通过MTT法对大多数制备的噻唑烷酮进行了体外评估,以检测它们对三种细胞系的潜在抗癌活性,结果发现它们对癌细胞系更有效,且对正常细胞无害。噻唑烷酮5c和5h进一步被评估为针对表皮生长因子受体(EGFR)的激酶抑制剂,显示出有效的抑制作用(IC值分别为:5c为0.2±0.009 μM,5h为0.098±0.004 μM)。此外,5c和5h分别通过DNA流式细胞术分析和膜联蛋白V - FITC凋亡检测,对HepG2细胞系的细胞周期和凋亡诱导能力产生影响。结果表明,它们具有破坏细胞周期并通过诱导处理细胞凋亡导致细胞死亡的作用。此外,分子对接研究表明5c和5h与表皮生长因子受体(EGFR)蛋白激酶的活性位点(PDB代码1M17)具有更好的结合模式。最后,通过奥西里斯方法对大多数化合物进行了毒性风险和理化性质表征,结果显示它们具有作为潜在药物的优异性质。

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