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呋喃酮群体感应抑制剂作为新型治疗剂对抗 的潜力。

Furanone quorum-sensing inhibitors with potential as novel therapeutics against .

机构信息

Nutrition Innovation Centre for Food and Health, School of Biomedical Sciences, Ulster University, Northern Ireland, UK.

School of Pharmacy and Pharmaceutical Sciences, Ulster University, Northern Ireland, UK.

出版信息

J Med Microbiol. 2020 Feb;69(2):195-206. doi: 10.1099/jmm.0.001144. Epub 2020 Jan 23.

Abstract

Micro-organisms use quorum sensing (QS), a cell density-dependent process, to communicate. This QS mode of interchange leads to the production of a variety of virulence factors, co-ordination of complex bacterial behaviours, such as swarming motility, degradation of host tissue and biofilm formation. QS is implicated in numerous human infections and consequently researchers have sought ways of effectively inhibiting the process in pathogenic bacteria. Two decades ago, furanones were the first class of chemical compounds identified as QS inhibitors (QSIs). is a ubiquitous organism, capable of causing a wide range of infections in humans, including eye and ear infections, wound infections and potentially fatal bacteraemia and thus novel treatments against this organism are greatly needed. This review provides a brief background on QS and the use of furanones as QSIs. Based on the effectiveness of action, both and we will explore the use of furanones as potential antimicrobial therapeutics and conclude with open questions.

摘要

微生物利用群体感应(QS),一种依赖细胞密度的过程,进行通信。这种QS 交换模式导致产生各种毒力因子,协调复杂的细菌行为,如群集运动、宿主组织降解和生物膜形成。QS 与许多人类感染有关,因此研究人员一直在寻找有效抑制病原菌中这一过程的方法。二十年前,呋喃酮类化合物被首次鉴定为 QS 抑制剂(QSIs)。是一种无处不在的生物体,能够在人类中引起广泛的感染,包括眼部和耳部感染、伤口感染,以及潜在致命的菌血症,因此迫切需要针对这种生物体的新治疗方法。本综述简要介绍了 QS 以及呋喃酮类化合物作为 QSIs 的应用。基于作用的有效性,我们将探讨呋喃酮类化合物作为潜在抗菌治疗剂的用途,并以未解决的问题结束。

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