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Synthesis and anti-cancer screening of novel heterocyclic-(2H)-123-triazoles as potential anti-cancer agents

机译:新型杂环-(2H)-123-三唑类化合物的合成及抗癌作用筛选

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摘要

trans-Cyanocombretastatin A-4 (trans-CA-4) analogues have been structurally modified to afford their more stable CA-4-(2H)-1,2,3-triazole analogues. Fifteen novel, stable 4-heteroaryl-5-aryl-(2H)-1,2,3-triazole CA-4 analogues (>8a–i, >9 and >11a–e) were evaluated for anti-cancer activity against a panel of 60 human cancer cell lines. These analogues displayed potent cytotoxic activity against both hematological and solid tumor cell lines with GI50 values in the low nanomolar range. The most potent compound, >8a, was a benzothiophen-2-yl analogue that incorporated a 3,4,5-trimethoxyphenyl moiety connected to the (2H)-1,2,3-triazole ring system. Compound >8a exhibited GI50 values of <10 nM against 80% of the cancer cell lines in the panel. Three triazole analogues, >8a, >8b and >8g, showed particularly potent growth inhibition against the triple negative Hs578T breast cancer cell line with GI50 values of 10.3 nM, 66.5 nM and 20.3 nM, respectively. Molecular docking studies suggest that these compounds bind to the same hydrophobic pocket at the interface of α- and β-tubulin that is occupied by colchicine and cis-CA-4, and are stabilized by Van der Waals’ interactions with surrounding amino acid residues. Compound >8a was found to inhibit tubulin polymerization in vitro with an IC50 value of 1.7 µM. The potent cytotoxicity of these novel compounds and their inhibition of tubulin dynamics make these triazole analogues promising candidates for development as anti-cancer drugs.
机译:反式Cyanocombretastatin A-4(反式CA-4)类似物已进行结构修饰,以提供其更稳定的CA-4-(2H)-1,2,3-三唑类似物。十五个稳定的新颖的4-杂芳基-5-芳基-(2H)-1,2,3-三唑CA-4类似物(> 8a–i ,> 9 和 > 11a–e )针对一组60种人类癌细胞系的抗癌活性进行了评估。这些类似物显示出对血液和实体瘤细胞系的有效细胞毒活性,GI50值在低纳摩尔范围内。最有效的化合物> 8a 是苯并噻吩-2-基类似物,其中包含与(2H)-1,2,3-三唑环系统相连的3,4,5-三甲氧基苯基部分。化合物> 8a 对面板中80%的癌细胞系显示的GI50值<10 nM。三种三唑类似物> 8a ,> 8b 和> 8g 对GI50值为10.3的三阴性Hs578T乳腺癌细胞系表现出特别有效的生长抑制作用nM,66.5 nM和20.3 nM。分子对接研究表明,这些化合物在秋水仙碱和顺式CA-4占据的α-微管蛋白和β-微管蛋白的界面上与同一疏水口袋结合,并通过范德华斯与周围氨基酸残基的相互作用而稳定。发现化合物> 8a 在体外抑制微管蛋白聚合,IC50值为1.7 µM。这些新型化合物的强细胞毒性及其对微管蛋白动力学的抑制作用使这些三唑类似物有望成为抗癌药物的候选药物。

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