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首页> 外文期刊>Medicinal chemistry research: an international journal for rapid communications on design and mechanisms of action of biologically active agents >Synthesis, in vitro anthelmintic, and molecular docking studies of novel 5-nitro benzoxazole derivatives
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Synthesis, in vitro anthelmintic, and molecular docking studies of novel 5-nitro benzoxazole derivatives

机译:新型5-硝基苯并恶唑衍生物的合成,体外驱虫和分子对接研究

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摘要

Novel 5-nitro-1, 3-benzoxazole derivatives (2-8) are synthesized from 5-nitro-1,3-benzoxazole-2-thiol 1. The newly synthesized compounds are characterized by analytical H-1 NMR, C-13 NMR, LC-MS mass spectrometry, and elemental analysis. All compounds are screened for in vitro anthelmintic activities. In correlation to in vitro anthelmintic activity, all compounds are subjected to molecular docking studies for the inhibition of beta-tubulin, target protein elite to the parasites. Compounds 1 and 4 have emerged as potent anthelmintic molecules. The binding energy and hydrogen bonds formed with the surrounding amino acids are in good agreement with predicted binding affinities obtained by molecular docking studies as verified by anthelmintic studies. The compound 5 has showed minimum binding energy with a hydrogen bond, and molecules 1, 4, 6, and 7 have good affinity toward the active pocket with two or more hydrogen bonds respectively, thus they may be considered as good inhibitor of beta-tubulin.
机译:由5-硝基-1,3-苯并恶唑-2-硫醇1合成新的5-硝基-1,3-苯并恶唑衍生物(2-8)。新合成的化合物的特征在于H-1 NMR的分析,C-13 NMR,LC-MS质谱和元素分析。筛选所有化合物的体外驱虫活性。与体外驱虫活性相关,所有化合物均经过分子对接研究,以抑制β-微管蛋白(靶蛋白精英)对寄生虫的抑制作用。化合物1和4已成为有效的驱虫分子。与周围氨基酸形成的结合能和氢键与通过驱虫研究证实的分子对接研究获得的预测结合亲和力高度吻合。化合物5具有最小的氢键结合能,并且分子1、4、6和7分别对具有两个或多个氢键的活性囊具有良好的亲和力,因此可以认为它们是β-微管蛋白的良好抑制剂。 。

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