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Quantum Chemistry Calculation-Aided Structural Optimization of Combretastatin A-4-like Tubulin Polymerization Inhibitors: Improved Stability and Biological Activity

机译:康贝他汀A-4类微管蛋白聚合抑制剂的量子化学计算辅助结构优化:提高的稳定性和生物活性

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摘要

A potent combretastatin A-4 (CA-4) like tubulin polymerization inhibitor 22b was found with strong antitumor activity previously. However, it easily undergoes cis-trans isomerization under natural light, and the resulting decrease in activity limits its further applications. In this study, we used quantum chemistry calculations to explore the molecular basis of its instability. Aided by the calculations, two rounds of structural optimization of 22b were conducted. Accelerated quantitative light stability testing confirmed that the stability of these designed compounds was significantly improved as predicted. Among them, compounds 1 and 3b displayed more potent inhibitory activity on tumor cell growth than 22b. In addition, the potent in vivo antitumor activity of compound 1 was confirmed. Quantum chemistry calculations were used in the optimization of stilbene-like molecules, providing new insight into stilbenoid optimization and important implications for the future development of novel CA-4-like tubulin polymerization inhibitors.
机译:先前发现像微管蛋白聚合抑制剂22b一样的有效的康他汀A-4(CA-4)具有强的抗肿瘤活性。但是,它在自然光下很容易进行顺反异构化,因此活性的降低限制了它的进一步应用。在这项研究中,我们使用量子化学计算来探索其不稳定性的分子基础。在计算的帮助下,进行了22b的两轮结构优化。加速的定量光稳定性测试证实,这些设计的化合物的稳定性如预期的那样得到了显着改善。其中,化合物1和3b对肿瘤细胞的生长显示出比22b更强的抑制活性。另外,证实了化合物1的有效的体内抗肿瘤活性。量子化学计算被用于优化二苯乙烯类分子,从而提供了对二苯乙烯类化合物优化的新见解,并对新型CA-4类微管蛋白聚合抑制剂的未来发展具有重要意义。

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