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Design, eco-friendly synthesis, molecular modeling and anticancer evaluation of thiazol-5(4H)-ones as potential tubulin polymerization inhibitors targeting the colchicine binding site

机译:噻唑-5(4H) - 硫氨酸含量聚合抑制剂的设计,环保合成,分子建模和抗癌评价靶向血清素结合位点的潜在管蛋白聚合抑制剂

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In recent years, suppressing tubulin polymerization has been developed as a therapeutic approach for cancer treatment. Thus, new derivatives based on thiazol-5(4 H )-ones have been designed and synthesized in an eco-friendly manner. The synthesized derivatives have the same essential pharmacophoric features of colchicine binding site inhibitors. The anti-proliferative activity of the new derivatives was evaluated on three human cancer cell lines (HCT-116, HepG-2, and MCF-7) using MTT assay procedure and colchicine was used as a positive control. Compounds 4f , 5a , 8f , 8g , and 8k showed superior antiproliferative activities against the three tested cell lines with IC _(50) values ranging from 2.89 to 9.29 μM. Further investigation for the most active cytotoxic agents as tubulin polymerization inhibitors was also performed in order to explore the mechanism of their anti-proliferative activity. Tubulin polymerization assay results were found to be comperable with the cytotoxicity results. Compounds 4f and 5a were the most potent tubulin polymerization inhibitors with an IC _(50) value of 9.33 and 9.52 nM, respectively. Further studies revealed the ability of 5a to induce apoptosis and arrest cell cycle growth at the G2/M phase. Molecular docking studies were also conducted to investigate possible binding interactions between the target compounds and the tubulin heterodimer active site. From these studies, it was concluded that inhibition of tubulin polymerization yields the reported cytotoxic activity.
机译:近年来,已成为抑制小管蛋白聚合作为癌症治疗的治疗方法。因此,基于噻唑-5(4小时) - 5(4小时)的新衍生物是以环保方式设计和合成的。合成的衍生物具有Colchicine结合位点抑制剂的相同必需的药物特征。使用MTT测定方法对三种人类癌细胞系(HCT-116,HepG-2和MCF-7)评估新衍生物的抗增殖活性,并且使用Colchicine作为阳性对照。化合物4F,5A,8F,8G和8K显示出对三种测试细胞系的优异的抗增殖活性,IC _(50)值范围为2.89至9.29μm。还进行了对最活性细胞毒性剂的进一步研究作为管蛋白聚合抑制剂,以探讨其抗增殖活性的机制。发现管蛋白聚合测定结果与细胞毒性结果占忠于忠诚。化合物4F和5A是最有效的管蛋白聚合抑制剂,IC _(50)值分别为9.33和9.52nm。进一步的研究表明,5A诱导凋亡和抑制G2 / M期的细胞周期生长的能力。还进行了分子对接研究以研究靶化合物和管蛋白异二二二二二二酯活性位点之间可能的结合相互作用。从这些研究中,得出结论,抑制微管蛋白聚合产生报告的细胞毒性活性。

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