天然来源的酚类分子及其衍生物作为抗hiv药物的潜力。

Mahmud Tareq Hassan Khan, Arjumand Ather
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引用次数: 22

摘要

鉴定干扰人类免疫缺陷病毒1型(HIV-1)病毒生命周期几个步骤的酚类化合物及其衍生物是开发治疗艾滋病的新分子的重点。从天然来源分离和表征的几种酚类化合物已被详细研究,并发现对HIV-1生命周期的不同步骤具有抑制作用,包括病毒-细胞融合和病毒吸收、逆转录、整合(in)和蛋白水解裂解。在这篇综述中,我们总结了一些强有力的证据,证明几种天然来源的酚类分子及其衍生物具有很好的抗hiv -1活性。本文根据抗HIV化合物在HIV生命周期中的作用机制对其进行了综述。我们还提到了一些使用计算机方法的发现,如虚拟筛选、对接、神经网络等,甚至化学基因组学和/或功能基因组学方法也可以用于快速识别有希望的新的抗hiv先导分子,而不会产生任何其他不想要的药理作用。含有大量酚类化合物的植物可以被认为是治疗HIV-1的强有力的分子来源。尽管抗逆转录病毒联合疗法不断取得进展,但艾滋病已成为非洲的主要死亡原因,也是全世界的第四大死亡原因。今天,许多研究小组正在探索植物界的生物和化学多样性,以寻找具有新的作用机制的新的和更好的抗艾滋病毒药物。
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Potentials of phenolic molecules of natural origin and their derivatives as anti-HIV agents.

Identification of phenolic compounds and their derivatives interfering the several steps of the viral life cycle of the human immunodeficiency virus type 1 (HIV-1) is focused for the development of novel molecules for the treatment of AIDS. Several phenolic compounds isolated and characterized from natural sources have been studied in detail and found to exhibit inhibitory effects against different steps of the HIV-1 life cycle, including virus-cell fusion and virus absorption, reverse transcription, integration (IN) and proteolytic cleavage. In the review, we are summarizing some strong evidences demonstrating several phenolic molecules and their derivatives from natural sources display promising anti-HIV-1 activities. The anti-HIV compounds have been organized in this review according to their mechanism of action in the life cycle of HIV. We also mentioned some findings using in silico approaches, like virtual screening, docking, neural network, etc., and even the chemogenomics and/or functional genomics approaches could be useful for the quick identifying promising new lead anti-HIV molecules without having any other unwanted pharmacological effects. Plants having large amount of phenolic compounds, can be considered as strong sources of molecules for the treatment of HIV-1. Despite the continuous advances made in antiretroviral combination therapy, AIDS has become the leading cause of death in Africa and the fourth worldwide. Today, many research groups are exploring the bio- and chemo-diversity of the plant kingdom to find new and better anti-HIV drugs with novel mechanisms of action.

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