Antiviral Flavonoids: A Natural Scaffold with Prospects as Phytomedicines against SARS-CoV2.

IF 3.3 3区 医学 Q2 CHEMISTRY, MEDICINAL
Chiranjeet Saha, Roumi Naskar, Sandipan Chakraborty
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引用次数: 0

Abstract

Flavonoids are vital candidates to fight against a wide range of pathogenic microbial infections. Due to their therapeutic potential, many flavonoids from the herbs of traditional medicine systems are now being evaluated as lead compounds to develop potential antimicrobial hits. The emergence of SARS-CoV-2 caused one of the deadliest pandemics that has ever been known to mankind. To date, more than 600 million confirmed cases of SARS-CoV2 infection have been reported worldwide. Situations are worse due to the unavailability of therapeutics to combat the viral disease. Thus, there is an urgent need to develop drugs against SARS-CoV2 and its emerging variants. Here, we have carried out a detailed mechanistic analysis of the antiviral efficacy of flavonoids in terms of their potential targets and structural feature required for exerting their antiviral activity. A catalog of various promising flavonoid compounds has been shown to elicit inhibitory effects against SARS-CoV and MERS-CoV proteases. However, they act in the high-micromolar regime. Thus a proper leadoptimization against the various proteases of SARS-CoV2 can lead to high-affinity SARS-CoV2 protease inhibitors. To enable lead optimization, a quantitative structure-activity relationship (QSAR) analysis has been developed for the flavonoids that have shown antiviral activity against viral proteases of SARS-CoV and MERS-CoV. High sequence similarities between coronavirus proteases enable the applicability of the developed QSAR to SARS-CoV2 proteases inhibitor screening. The detailed mechanistic analysis of the antiviral flavonoids and the developed QSAR models is a step forward toward the development of flavonoid-based therapeutics or supplements to fight against COVID-19.

抗病毒类黄酮:一种有望作为抗 SARS-CoV2 植物药物的天然支架
类黄酮是抗击多种病原微生物感染的重要候选化合物。由于黄酮类化合物具有治疗潜力,许多来自传统医药系统草药的黄酮类化合物目前正作为先导化合物进行评估,以开发潜在的抗菌药物。SARS-CoV-2 的出现造成了人类有史以来最致命的大流行病之一。迄今为止,全球已报告的 SARS-CoV2 感染确诊病例超过 6 亿例。由于没有治疗病毒疾病的药物,情况变得更糟。因此,开发抗 SARS-CoV2 及其新变种的药物迫在眉睫。在此,我们从黄酮类化合物的潜在靶点和发挥其抗病毒活性所需的结构特征方面,对其抗病毒功效进行了详细的机理分析。各种有前景的类黄酮化合物目录已被证明对SARS-CoV和MERS-CoV蛋白酶具有抑制作用。然而,它们的作用机制是高微摩尔。因此,针对 SARS-CoV2 的各种蛋白酶进行适当的先导物优化,可以产生高亲和力的 SARS-CoV2 蛋白酶抑制剂。为了实现先导物的优化,我们对针对 SARS-CoV 和 MERS-CoV 病毒蛋白酶具有抗病毒活性的黄酮类化合物进行了定量结构-活性关系(QSAR)分析。冠状病毒蛋白酶之间的序列具有高度相似性,因此所开发的 QSAR 适用于 SARS-CoV2 蛋白酶抑制剂的筛选。对抗病毒黄酮类化合物的详细机理分析和所开发的 QSAR 模型是朝着开发基于黄酮类化合物的治疗药物或补充剂以抗击 COVID-19 迈出的一步。
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来源期刊
CiteScore
7.80
自引率
0.00%
发文量
231
审稿时长
6 months
期刊介绍: The aim of Mini-Reviews in Medicinal Chemistry is to publish short reviews on the important recent developments in medicinal chemistry and allied disciplines. Mini-Reviews in Medicinal Chemistry covers all areas of medicinal chemistry including developments in rational drug design, synthetic chemistry, bioorganic chemistry, high-throughput screening, combinatorial chemistry, drug targets, and natural product research and structure-activity relationship studies. Mini-Reviews in Medicinal Chemistry is an essential journal for every medicinal and pharmaceutical chemist who wishes to be kept informed and up-to-date with the latest and most important developments.
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