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植物源抗菌剂及其在对抗抗菌药物耐药性中的关键作用。

Plant-Derived Antimicrobials and Their Crucial Role in Combating Antimicrobial Resistance.

作者信息

Angelini Paola

机构信息

Department of Chemistry, Biology and Biotechnology, University of Perugia, 06122 Perugia, Italy.

出版信息

Antibiotics (Basel). 2024 Aug 9;13(8):746. doi: 10.3390/antibiotics13080746.

Abstract

Antibiotic resistance emerged shortly after the discovery of the first antibiotic and has remained a critical public health issue ever since. Managing antibiotic resistance in clinical settings continues to be challenging, particularly with the rise of superbugs, or bacteria resistant to multiple antibiotics, known as multidrug-resistant (MDR) bacteria. This rapid development of resistance has compelled researchers to continuously seek new antimicrobial agents to curb resistance, despite a shrinking pipeline of new drugs. Recently, the focus of antimicrobial discovery has shifted to plants, fungi, lichens, endophytes, and various marine sources, such as seaweeds, corals, and other microorganisms, due to their promising properties. For this review, an extensive search was conducted across multiple scientific databases, including PubMed, Elsevier, ResearchGate, Scopus, and Google Scholar, encompassing publications from 1929 to 2024. This review provides a concise overview of the mechanisms employed by bacteria to develop antibiotic resistance, followed by an in-depth exploration of plant secondary metabolites as a potential solution to MDR pathogens. In recent years, the interest in plant-based medicines has surged, driven by their advantageous properties. However, additional research is essential to fully understand the mechanisms of action and verify the safety of antimicrobial phytochemicals. Future prospects for enhancing the use of plant secondary metabolites in combating antibiotic-resistant pathogens will also be discussed.

摘要

在第一种抗生素被发现后不久,抗生素耐药性就出现了,从那时起它一直是一个关键的公共卫生问题。在临床环境中管理抗生素耐药性仍然具有挑战性,尤其是随着超级细菌的出现,即对多种抗生素耐药的细菌,也就是多重耐药(MDR)细菌的增加。尽管新药研发渠道不断缩减,但这种耐药性的快速发展迫使研究人员不断寻找新的抗菌剂来遏制耐药性。最近,由于植物、真菌、地衣、内生菌以及各种海洋来源,如海藻、珊瑚和其他微生物具有潜在特性,抗菌药物发现的重点已转向这些领域。在本次综述中,我们在多个科学数据库中进行了广泛搜索,包括PubMed、爱思唯尔、ResearchGate、Scopus和谷歌学术,涵盖了1929年至2024年的出版物。本综述简要概述了细菌产生抗生素耐药性的机制,随后深入探讨了植物次生代谢产物作为解决多重耐药病原体的潜在方案。近年来,由于植物性药物的有利特性,人们对其兴趣激增。然而,要全面了解其作用机制并验证抗菌植物化学物质的安全性,还需要进行更多研究。我们还将讨论在对抗抗生素耐药病原体方面增加植物次生代谢产物使用的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b923/11350763/04d879f85843/antibiotics-13-00746-g001.jpg

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