优化酰胺连接香豆素药理的一个步骤:作为抗艾滋病毒药物

IF 0.8 4区 医学 Q4 IMMUNOLOGY
Harish Chandra Joshi, Vikas Kumar, Priyank Purohit, Indra P Pandey, Gaurav Joshi
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引用次数: 0

摘要

本研究的目的是通过对含有或不含取代基的香豆素药代体进行室内虚拟筛选,找出有效的抗艾滋病毒药物。虚拟筛选首先通过计算对接和相互作用确定靶点,通过分子动力学确定结合亲和力,并利用各种酶进行 ADMET 分析。靶点研究表明,该靶点参与了艾滋病毒复制的各个阶段,并决定了非核苷类逆转录酶抑制剂(RTI)对其产生影响的方式。相互作用模式和模拟研究得出结论,香豆素药层对 HIV 的逆转录酶(尤其是 3HVT)具有特异性亲和力。此外,酰胺连接起到了协同桥梁的作用,为药层提供了更多的相互作用。初步结果确定了 83 个虚拟酰胺类分子,并通过对接和 MD 研究(100 ns)对最适合的 HIV 逆转录酶酶(如 PDB ID "3HVT")进行了筛选。虚拟筛选研究表明,化合物 7d 和 7e 具有很高的亲和力,其 IC50 值最低,分别为 0.729 和 0.658 μM;此外,它们的代谢模式研究、毒性和 QED 值在 0.31-0.40 范围内,证明它们是一种很好的候选药物。此外,还对这两种化合物进行了合成和表征,以用于未来的体外和体内研究。基于硅学的 7d 和 7e 化合物描述指标预示了未来的发展潜力,并为开发更有效的抗艾滋病毒/艾滋病药物提供了最佳的两个分子及其合成路线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Step Towards Optimization of Amide-Linked Coumarin Pharmacophore: As an Anti-HIV Agent.

The aim of the present investigation is to identify effective anti-HIV drugs through the in-silico virtual screening of the coumarin pharmacophore with or without substituents. Virtual screening started with target identification through computation docking and interactions, binding affinity through molecular dynamics, and the ADMET profile through the use of various enzymes. The target study suggests that the target is involved in various stages of HIV replication and in determining the ways in which non-nucleoside reverse transcriptase inhibitors (RTIs) influence it. The interaction pattern and simulation study conclude the specific affinity of coumarin pharmacophore to the HIV's reverse transcriptase enzyme, especially 3HVT. Moreover, the amide linkage worked as a synergistic bridge to provide more interaction to the pharmacophore. The initial results led to the determination of 83 virtual amide-like molecules, which were screened through docking and MD studies (100 ns) on the best-suited enzyme HIV's reverse transcriptase enzyme, such as PDB ID "3HVT". The virtual screening study revealed the high affinity of compounds 7d and 7e with the lowest IC50 values of 0.729 and 0.658 μM; moreover, their metabolism pattern study, toxicity, and QED values in a range of 0.31-0.40 support a good drug candidate. The two compounds were also synthesized and characterized for future in vitro and in vivo studies. The in silico-based descriptor of compounds 7d and 7e indicates the potential future and provides the best two molecules and their synthetic route for the development of a more effective drug to combat HIV/AIDS epidemics.

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来源期刊
Current HIV Research
Current HIV Research 医学-病毒学
CiteScore
1.90
自引率
10.00%
发文量
81
审稿时长
6-12 weeks
期刊介绍: Current HIV Research covers all the latest and outstanding developments of HIV research by publishing original research, review articles and guest edited thematic issues. The novel pioneering work in the basic and clinical fields on all areas of HIV research covers: virus replication and gene expression, HIV assembly, virus-cell interaction, viral pathogenesis, epidemiology and transmission, anti-retroviral therapy and adherence, drug discovery, the latest developments in HIV/AIDS vaccines and animal models, mechanisms and interactions with AIDS related diseases, social and public health issues related to HIV disease, and prevention of viral infection. Periodically, the journal invites guest editors to devote an issue on a particular area of HIV research of great interest that increases our understanding of the virus and its complex interaction with the host.
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