Department of Chemistry, Madhyanchal Professional University, Ratibad, Bhopal, 462044, Madhya Pradesh, India.
Department of Zoology, University of Kashmir, Srinagar, 190006, India.
Microb Pathog. 2021 Aug;157:104933. doi: 10.1016/j.micpath.2021.104933. Epub 2021 May 11.
The recent outbreak of viral infection and its transmission has highlighted the importance of its slowdown for the safeguard of public health, globally. The identification of novel drugs and efficient therapies against these infectious viruses is need of the hour. The eruption of COVID-19 is caused by a novel acute respiratory syndrome virus SARS-CoV-2 which has taken the whole world by storm as it has transformed into a global pandemic. This lethal syndrome is a global health threat to general public which has already affected millions of people. Despite the development of some potential vaccines and repurposed drugs by some Pharma companies, this health emergency needs more attention due to the less efficacy of these vaccines coupled with the emergence of novel and resistant strains of SARS-CoV-2. Due to enormous structural diversity and biological applications, natural products are considered as a wonderful source of drugs for such diseases. Natural product based drugs constitute a substantial proportion of the pharmaceutical market particularly in the therapeutic areas of infectious diseases and oncology. The naturally occurring bioactive antiviral phytochemicals including alkaloids, flavonoids and peptides have been subjected to virtual screening against COVID-19. Since there is no specific medicine available for the treatment of Covid-19, designing new drugs using in silico methods plays an all important role to find that magic bullet which can target this lethal virus. The in silico method is not only quick but economical also when compared to the other conventional methods which are hit and trial methods. Based on this in silico approach, various natural products have been recently identified which might have a potential to inhibit COVID-19 outbreak. These natural products have been shown by these docking studies to interact with the spike protein of the novel coronavirus. This spike protein has been shown to bind to a transmembrane protein called Angiotensin converting enzyme 2 (ACE2), this protein acts as a receptor for the viral spike protein. This comprehensive review article anticipates providing a summary of the authentic and peer reviewed published literature about the potential of natural metabolites that can be developed into possible lead compounds against this new threat of Covid-19. Main focus of the article will be to highlight natural sources of potential anti-coronavirus molecules, mechanism of action, docking studies and the target proteins as well as their toxicity profiles. This review article intends to provide a starting point for the research endeavors that are needed for the design and development of drugs based on pure natural products, their synthetic or semi-synthetic derivatives and standardized plant extracts. This review article will be highly helpful for scientists who are working or intend to work on antiviral drugs from natural sources.
最近病毒性感染的爆发及其传播,突显了减缓病毒传播对全球公共卫生的重要性。当前需要寻找针对这些传染性病毒的新型药物和有效疗法。COVID-19 的爆发是由新型急性呼吸道综合征病毒 SARS-CoV-2 引起的,它已成为一种全球性大流行,席卷全球。这种致命综合征对公众健康构成全球性威胁,已影响数百万人。尽管一些制药公司已经开发出一些有潜力的疫苗和已上市药物,但由于这些疫苗的效果有限,再加上 SARS-CoV-2 出现了新型和耐药株,这种卫生紧急情况需要更多关注。由于天然产物具有巨大的结构多样性和生物应用,因此被认为是治疗此类疾病的理想药物来源。天然产物药物构成了药物市场的重要组成部分,特别是在传染病和肿瘤学等治疗领域。包括生物碱、类黄酮和肽在内的天然存在的抗病毒植物化学物质已经针对 COVID-19 进行了虚拟筛选。由于目前尚无针对 COVID-19 治疗的特效药物,因此使用计算机模拟方法设计新药对于寻找能够靶向这种致命病毒的“魔法子弹”至关重要。与其他基于试验和错误的传统方法相比,计算机模拟方法不仅快速而且经济。基于这种计算机模拟方法,最近已经确定了各种具有抑制 COVID-19 爆发潜力的天然产物。这些天然产物已通过这些对接研究显示与新型冠状病毒的刺突蛋白相互作用。刺突蛋白已被证明与一种称为血管紧张素转换酶 2 (ACE2) 的跨膜蛋白结合,该蛋白是病毒刺突蛋白的受体。本文通过综述,提供了关于天然代谢产物的潜在作用的真实和同行评审的已发表文献的概述,这些代谢产物可能被开发成针对这一新的 COVID-19 威胁的潜在先导化合物。本文的主要重点将是突出具有潜在抗冠状病毒分子的天然来源、作用机制、对接研究以及靶蛋白及其毒性概况。本文旨在为基于天然产物、其合成或半合成衍生物以及标准化植物提取物的药物设计和开发提供研究工作的起点。本文对从事或有意从事天然来源抗病毒药物研究的科学家具有很高的参考价值。