Discovery of Ten Anti-HIV Hit Compounds and Preliminary Pharmacological Mechanisms Studies

IF 0.8 4区 医学 Q4 IMMUNOLOGY Current HIV Research Pub Date : 2024-01-01 DOI:10.2174/011570162X301289240320082840
Yushan Lian, Zhimin Huang, Xinyi Liu, Zhicheng Deng, Dan Gao, Xiaohui Wang
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Abstract

Background: The research and development of HIV drugs is very important, but at the same time it is a long cycle and expensive system project. High-throughput drug screening systems and molecular libraries of potential hit compounds remain the main ways for the discovery of hit compounds with anti-HIV activity.

Objective: The aim of this study was to screen out the hit compounds against HIV-1 in the natural product molecule library and the antiviral molecule library, and elucidate the molecular mechanism of their inhibition of HIV-1, so as to provide a new choice for AIDS drug research.

Methods: In this study, a drug screening system using HIV Rev-dependent indicator cell line (Rev-A3R5-GFP reporter cells) with pseudoviruses (pNL4-3) was used. The natural drug molecule library and antiviral molecule library were screened, and preliminary drug mechanism studies were performed.

Results: Ten promising hit compounds were screened. These ten molecules and their drug inhibitory IC50 were as follows: Cephaeline (0.50 μM), Yadanziolide A (8.82 μM), Bruceine D (2.48 μM), Astragaloside IV (4.30 μM), RX-3117 (1.32 μM), Harringtonine (0.63 μM), Tubercidin (0.41 μM), Theaflavine-3, 3'-digallate (0.41 μM), Ginkgetin (10.76 μM), ZK756326 (5.97 μM). The results of the Time of additions showed that except for Astragaloside IV and Theaflavine-3, 3'-digallate had a weak entry inhibition effect, and it was speculated that all ten compounds had an intracellular inhibition effect. Cephaeline, Harringtonine, Astragaloside IV, Bruceine D, and Tubercidin may have pre-reverse transcriptional inhibition. Yadanziolide A, Theaflavine-3, 3'-digallate, Ginkgetin and RX-3117 may be in the post-reverse transcriptional inhibition. The inhibitory effect of ZK 75632 may be in the reverse transcriptional process.

Conclusion: A drug screening system using Rev-A3R5-GFP reporter cells with pseudoviruses (pNL4-3) is highly efficient. This study provided potential hit compounds for new HIV drug research.

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发现十种抗 HIV 命中化合物并进行初步药理机制研究。
背景:艾滋病药物的研发非常重要,但同时也是一项周期长、耗资大的系统工程。高通量药物筛选系统和潜在靶点化合物分子库仍然是发现具有抗 HIV 活性的靶点化合物的主要途径:本研究旨在从天然产物分子库和抗病毒分子库中筛选出抗 HIV-1 的热门化合物,并阐明其抑制 HIV-1 的分子机制,从而为艾滋病药物研究提供新的选择:方法:本研究采用HIV Rev依赖性指示细胞系(Rev-A3R5-GFP报告细胞)与伪病毒(pNL4-3)组成的药物筛选系统。筛选了天然药物分子库和抗病毒分子库,并进行了初步的药物机制研究:结果:筛选出 10 个有前景的命中化合物。结果:筛选出 10 个有希望的命中化合物,这 10 个分子及其药物抑制 IC50 值如下:Cephaeline(0.50 μM)、Yadanziolide A(8.82 μM)、Bruceine D(2.48 μM)、Astragaloside IV(4.30 μM)、RX-3117(1.32 μM)、Harringtonine(0.63 μM)、Tubercidin(0.41 μM)、Theaflavine-3,3'-digallate(0.41 μM)、Ginkgetin(10.76 μM)、ZK756326(5.97 μM)。添加时间结果表明,除黄芪皂苷 IV 和茶黄素-3,3'-二镓酸酯有微弱的进入抑制作用外,其他十种化合物均有细胞内抑制作用。Cephaeline、Harringtonine、Astragaloside IV、Bruceine D 和 Tubercidin 可能具有逆转录前抑制作用。Yadanziolide A、Theaflavine-3,3'-digallate、Ginkgetin 和 RX-3117 可能具有逆转录后抑制作用。ZK 75632 的抑制作用可能发生在逆转录过程中:使用带有伪病毒(pNL4-3)的 Rev-A3R5-GFP 报告细胞的药物筛选系统非常有效。这项研究为艾滋病新药研究提供了潜在的命中化合物。
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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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