现代和有前途的抗菌药物的发展方向

Tetiana S. Todosiichuk, Serhii O. Soloviov, Lin Wu1, Iryna V. Dzyublyk, Olena P. Trokhimenko, M. Dudek, A. Symchuk, V. Vasylenko
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引用次数: 0

摘要

抗生素的使用越来越受到限制。这主要是由于对致病菌产生耐药性,随着时间的推移,越来越多的细菌将对抗菌素产生耐药性。这个问题不可避免地导致这样的结论:研究对抗病原体的替代方法是必不可少的,这对于开发足够可靠和有效的细菌感染治疗方法是必要的。本文综述了传统抗生素和非抗生素治疗策略的一些最新进展。研究表明,传统的抗菌靶点包括已知抗生素类的衍生物、具有新靶点的新化学类以及具有不明确靶点的未知或未定义药物。对抗微生物病原体的有希望的策略已经确定,包括新的目标,即毒素分泌系统,生物膜的形成,以及影响微生物群体群体感应的粘附机制。此外,重要的是使用新的抗菌药物与其他非抗生素的作用机制:噬菌体和噬菌体衍生肽,微生物调节疗法,增强免疫反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Directions in the development of modern and promising antimicrobial agents
The use of antibiotics is becoming increasingly limited. This is mainly due to the development of resistance to pathogenic bacteria, and, over time, more and more bacteria will become resistant to antimicrobials. This problem inevitably leads to the conclusion that studies into alternative methods of combating pathogens, which are necessary to develop sufficiently reliable and effective therapies for bacterial infections, are indispensable. This review highlights some recent developments in conventional antibiotic and non-antibiotic treatment strategies. It has been shown that traditional antibacterial targets include derivatives of known antibiotic classes, new chemical classes with new targets, as well as unknown or undefined agents with unclear targets. Promising strategies for combating microbial pathogens have been identified, including new targets, namely, toxin secretion systems, biofilm formation, and adhesion mechanisms that affect quorum sensing of microbial populations. In addition, it is important to use new antimicrobial agents with other, non-antibiotic, mechanisms of action: phage and phage-derived peptides, microbiota-modulating therapies, and enhancing immune response.
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