首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Molecular modelling design, synthesis and cytotoxic evaluation of certain substituted 2-(3,4,5-triacetoxybenzoylamino)benzo[d]thiazoleand 2-(galloylamino)benzo[d]thiazole derivatives having potential topoisomerase-I inhibitory activity
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Molecular modelling design, synthesis and cytotoxic evaluation of certain substituted 2-(3,4,5-triacetoxybenzoylamino)benzo[d]thiazoleand 2-(galloylamino)benzo[d]thiazole derivatives having potential topoisomerase-I inhibitory activity

机译:某些取代的2-(3,4,5-三乙酰氧基苯甲酰中酰氨基)苯并[d]噻唑的2-(霍洛羊氨基)苯并[d]噻唑衍生物具有潜在的拓扑异构酶-i抑制活性的苯并衍生物

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摘要

New 2-(3,4,5-triacetoxybenzoylamino)benzothiazoles (4a~5f) and 2-(galloylamino)benzothiazoles (6a~7f), were designed as topoisomerase-I inhibitors. Compare/fit studies between these molecules and the generated topoisomerase-I inhibitors hypothesis revealed that 4a~5f have higher fitting values than (6a~7f). Also, docking of 4a~7f with the topoisomerase-I enzyme prioritized the higher activity of (4a~5f) than (6a~7f).These molecules were synthesized and biologically evaluated for their in vitro cytotoxic activity against Hela and MCF7 human cancer cell lines in comparison to Camptothecin (topo-l inhibitor) and doxorubicin (topo-ll inhibitors) as reference drugs. Such screening revealed that compounds 4d, 4e, 4h, 5b, 5c and 5e have comparable higher cytotoxic activity in both cultures than these reference drugs. The highest active molecule was 5f that gave 1.5 folds higher cytotoxic activity against Hela cell cultures and 1.9 folds higher activity against MCF7 cell lines than doxorubicin and 1.6 folds and 2.2 folds higher activity towards the two respective cultures than Camptothecin.
机译:新的2-(3,4,5-三乙酰氧基苯甲酰氨基)苯并噻唑(4a~5f)和2-(没食子酰氨基)苯并噻唑(6a~7f)被设计为拓扑异构酶-I抑制剂。这些分子与生成的拓扑异构酶-I抑制剂假说之间的比较/拟合研究表明,4a~5f的拟合值高于(6a~7f)。此外,4a~7f与拓扑异构酶-I的对接使(4a~5f)的活性高于(6a~7f)。合成了这些分子,并对其对Hela和MCF7人类癌细胞系的体外细胞毒性活性进行了生物学评估,与作为参考药物的喜树碱(拓扑异构酶-l抑制剂)和阿霉素(拓扑异构酶-ll抑制剂)进行了比较。此类筛选显示化合物4d、4e、4h、5b、5c和5e在两种培养物中的细胞毒性活性均高于这些参考药物。最高活性分子是5f,其对Hela细胞培养物的细胞毒性活性比阿霉素高1.5倍,对MCF7细胞系的活性比阿霉素高1.9倍,对两种培养物的活性分别比喜树碱高1.6倍和2.2倍。

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