Qadri Hafsa, Haseeb Shah Abdul, Mudasir Ahmad Syed, Alshehri Bader, Almilaibary Abdullah, Ahmad Mir Manzoor
Department of Bioresources, School of Biological Sciences, University of Kashmir, Srinagar 190006, India.
Division of Animal Biotechnology, SKUAST-K, Shuhama-190006, J&K, India.
Saudi J Biol Sci. 2022 Sep;29(9):103376. doi: 10.1016/j.sjbs.2022.103376. Epub 2022 Jul 18.
Human infectious diseases caused by various microbial pathogens, in general, impact a large population of individuals every year. These microbial diseases that spread quickly remain to be a big issue in various health-related domains and to withstand the negative drug impacts, the antimicrobial-resistant pathogenic microbial organisms (pathogenic bacteria and pathogenic fungi) have developed a variety of resistance processes against many antimicrobial drug classes. During the COVID-19 outbreak, there seems to be an upsurge in drug and multidrug resistant-associated pathogenic microbial species. The preponderance of existing antimicrobials isn't completely effective, which limits their application in clinical settings. Several naturally occurring chemicals produced from bacteria, plants, animals, marine species, and other sources are now being studied for antimicrobial characteristics. These natural antimicrobial compounds extracted from different sources have been demonstrated to be effective against a variety of diseases, although plants remain the most abundant source. These compounds have shown promise in reducing the microbial diseases linked to the development of drug tolerance and resistance. This paper offers a detailed review of some of the most vital and promising natural compounds and their derivatives against various human infectious microbial organisms. The inhibitory action of different natural antimicrobial compounds, and their possible mechanism of antimicrobial action against a range of pathogenic fungal and bacterial organisms, is provided. The review will be useful in refining current antimicrobial (antifungal and antibacterial) medicines as well as establishing new treatment strategies to tackle the rising number of human bacterial and fungal-associated infections.
一般来说,由各种微生物病原体引起的人类传染病每年都会影响大量个体。这些迅速传播的微生物疾病在各个与健康相关的领域仍然是一个大问题,为了抵御药物的负面影响,耐抗菌药的致病微生物(致病细菌和致病真菌)已经针对许多抗菌药物类别形成了多种耐药机制。在新冠疫情期间,与耐药和多重耐药相关的致病微生物种类似乎有所增加。现有的大多数抗菌药物并不完全有效,这限制了它们在临床环境中的应用。目前正在研究从细菌、植物、动物、海洋物种和其他来源产生的几种天然化学物质的抗菌特性。从不同来源提取的这些天然抗菌化合物已被证明对多种疾病有效,尽管植物仍然是最丰富的来源。这些化合物在减少与耐药性和耐受性发展相关的微生物疾病方面显示出了前景。本文详细综述了一些针对各种人类感染性微生物的最重要且最有前景的天然化合物及其衍生物。文中提供了不同天然抗菌化合物的抑制作用及其对一系列致病真菌和细菌的可能抗菌作用机制。该综述将有助于改进当前的抗菌(抗真菌和抗菌)药物,并建立新的治疗策略来应对日益增多的人类细菌和真菌相关感染。