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新型香豆素-靛红杂合体作为有效的抗利什曼原虫药物:合成、计算机模拟和体外评价。

Novel coumarin-isatin hybrids as potent antileishmanial agents: Synthesis, in silico and in vitro evaluations.

机构信息

Department of Chemistry, Quaid-i-Azam University, Islamabad 45320, Pakistan.

Suleiman Bin Abdullah Aba Akhail - Centre for Interdisciplinary Research in Basic Science (SA-CIRBS), Faculty of Basic & Applied Sciences, International Islamic University, Islamabad 44000, Pakistan.

出版信息

Bioorg Chem. 2021 May;110:104816. doi: 10.1016/j.bioorg.2021.104816. Epub 2021 Mar 10.

Abstract

Leishmaniasis being one of the six major tropical diseases that affects nearly 0.7-1.3 million people annually, has so far limited and high toxic therapeutic options. Herein, we report the synthesis, in silico, and in vitro evaluations of novel coumarin-incorporated isatin hydrazones (Spf-1 - Spf-10) as highly potent and safe antileishmanial agents. Molecular docking was initially carried out to decipher the binding confirmation of lead molecules towards the active cavity of the target protein (Leishmanolysin gp63) of Leishmania tropica. Among all the docked compounds, only Spf-6, Spf-8, and Spf-10 showed high binding affinities due to a pattern of strong conventional hydrogen bonds and hydrophobic π-interactions. The molecular dynamics simulations showed the stable pattern of such bonding and structure-based confirmation with a time scale of 50 ns towards the top compound (Spf-10) and protein. These analyses affirmed the high stability of the system. Three out of ten compounds evaluated for their antileishmanial activity against Leishmania tropica promastigotes and amastigotes were found to be active at micromolar concentrations (IC range 0.1-4.13 μmol/L), and most importantly, they were also found to be highly biocompatible when screened for their toxicity in human erythrocytes.

摘要

利什曼病是影响全球近 70 万至 130 万人/年的六大热带病之一,目前的治疗方法有限且毒性大。本研究报告了新型香豆素-靛红腙(Spf-1 - Spf-10)的合成、计算机模拟和体外评估,这些化合物是具有高潜力和安全性的抗利什曼病药物。最初通过分子对接来解析先导化合物与利什曼热带株利什曼醇肽 gp63 靶蛋白活性腔的结合确认。在所有对接的化合物中,只有 Spf-6、Spf-8 和 Spf-10 显示出高结合亲和力,因为它们具有强氢键和疏水π-相互作用模式。分子动力学模拟显示了这种键合的稳定模式和基于结构的确认,对于顶级化合物(Spf-10)和蛋白质的时间尺度为 50 ns。这些分析证实了该系统的高稳定性。在针对利什曼热带株前鞭毛体和无鞭毛体的抗利什曼原虫活性评估中,十种化合物中有三种在微摩尔浓度下具有活性(IC 范围为 0.1-4.13 μmol/L),最重要的是,在筛选它们对人红细胞的毒性时,发现它们也具有很高的生物相容性。

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