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新型 N-取代哌嗪-连接噻吩-3-甲酰胺硒化物的合成、生物评价及分子对接研究作为具有 EGFR 激酶抑制活性的强效抗增殖剂。

Synthesis, biological evaluation, and molecular docking studies of novel N-substituted piperazine-tethered thiophene-3-carboxamide selenides as potent antiproliferative agents with EGFR kinase inhibitory activity.

机构信息

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

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

出版信息

Bioorg Chem. 2024 Oct;151:107677. doi: 10.1016/j.bioorg.2024.107677. Epub 2024 Jul 28.

Abstract

In the context of structural investigation and optimization of various potential EGFR inhibitors, a novel series of asymmetrical piperazine-tethered trisubstituted thiophene-3-carboxamide selenide derivatives were synthesized and evaluated for their antiproliferative potential against selected human cancer cell lines. These derivatives, built based on a previously identified hit molecule, were synthesized via multiple-step reactions, including optimization of the C-Se cross-coupling reaction. Two compounds, 17i and 18i, displayed significant cytotoxicity (IC value: 4.82 ± 0.80 µM and 1.43 ± 0.08 µM) against HCT116 and A549 cancer cell lines, respectively. Quantitative analysis of apoptotic stages using Annexin V-FITC/PI double staining validated their apoptotic potential. Further, compound 18i demonstrated a remarkable inhibition of EGFR kinase, with an IC concentration of 42.3 nM. The lead compound 18i, with remarkable in vitro cytotoxicity, apoptosis induction capability, and EGFR inhibition, emerges as a promising candidate for anticancer therapy.

摘要

在对各种潜在的 EGFR 抑制剂进行结构研究和优化的背景下,我们合成了一系列新型的不对称哌嗪连接的三取代噻吩-3-甲酰胺硒代衍生物,并评估了它们对选定的人类癌细胞系的抗增殖潜力。这些衍生物是基于之前鉴定的命中分子构建的,通过多步反应合成,包括 C-Se 交叉偶联反应的优化。两个化合物 17i 和 18i 对 HCT116 和 A549 癌细胞系显示出显著的细胞毒性(IC 值:4.82 ± 0.80 µM 和 1.43 ± 0.08 µM)。使用 Annexin V-FITC/PI 双重染色进行凋亡阶段的定量分析验证了它们的凋亡潜力。此外,化合物 18i 对 EGFR 激酶表现出显著的抑制作用,IC 浓度为 42.3 nM。先导化合物 18i 具有显著的体外细胞毒性、诱导凋亡能力和 EGFR 抑制作用,有望成为癌症治疗的候选药物。

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