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设计、合成并评价含吡嗪基的杂环唑类衍生物作为潜在端粒酶抑制剂。

Design, synthesis and biological evaluation of heterocyclic azoles derivatives containing pyrazine moiety as potential telomerase inhibitors.

机构信息

State Key Laboratory of Pharmaceutical Biotechnology, Nanjing University, Nanjing 210093, PR China.

出版信息

Bioorg Med Chem. 2012 Nov 1;20(21):6356-65. doi: 10.1016/j.bmc.2012.08.059. Epub 2012 Sep 11.

Abstract

Three series of novel heterocyclic azoles derivatives containing pyrazine (5a-5k, 8a-8k and 11a-11k) have been designed, synthesized, structurally determined, and their biological activities were evaluated as potential telomerase inhibitors. Among the oxadiazole derivatives, compound 5c showed the most potent biological activity against SW1116 cancer cell line (IC(50)=2.46 μM against SW1116 and IC(50)=3.55 μM for telomerase). Compound 8h performed the best in the thiadiazole derivatives (IC(50)=0.78 μM against HEPG2 and IC(50)=1.24 μM for telomerase), which was comparable to the positive control. While compound 11f showed the most potent biological activity (IC(50)=4.12 μM against SW1116 and IC(50)=15.03 μM for telomerase) among the triazole derivatives. Docking simulation by positioning compounds 5c, 8h and 11f into the telomerase structure active site was performed to explore the possible binding model. The results of apoptosis demonstrated that compound 8h possessed good antitumor activity against HEPG2 cancer cell line. Therefore, compound 8h with potent inhibitory activity in tumor growth inhibition may be a potential antitumor agent against HEPG2 cancer cell. Therefore, the introduction of oxadiazole, thiadiazole and triazole structures reinforced the combination of our compounds and the receptor, resulting in progress of bioactivity.

摘要

已经设计、合成、结构测定了三个系列含有吡嗪的新型杂环唑类衍生物(5a-5k、8a-8k 和 11a-11k),并评估了它们作为潜在端粒酶抑制剂的生物活性。在噁二唑衍生物中,化合物 5c 对 SW1116 癌细胞系表现出最强的生物活性(IC50=2.46 μM 对 SW1116 和 IC50=3.55 μM 对端粒酶)。在噻二唑衍生物中,化合物 8h 的性能最佳(IC50=0.78 μM 对 HEPG2 和 IC50=1.24 μM 对端粒酶),与阳性对照相当。而在三唑衍生物中,化合物 11f 表现出最强的生物活性(IC50=4.12 μM 对 SW1116 和 IC50=15.03 μM 对端粒酶)。通过将化合物 5c、8h 和 11f 定位到端粒酶结构的活性位点,进行了对接模拟以探索可能的结合模型。凋亡实验结果表明,化合物 8h 对 HEPG2 癌细胞系具有良好的抗肿瘤活性。因此,化合物 8h 具有抑制肿瘤生长的强抑制活性,可能是一种针对 HEPG2 癌细胞的潜在抗肿瘤药物。因此,噁二唑、噻二唑和三唑结构的引入增强了我们的化合物与受体的结合,从而提高了生物活性。

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