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细菌群体感应干扰:从生物制药角度看

Interference in Bacterial Quorum Sensing: A Biopharmaceutical Perspective.

作者信息

Rémy Benjamin, Mion Sonia, Plener Laure, Elias Mikael, Chabrière Eric, Daudé David

机构信息

IRD, APHM, MEPHI, IHU-Méditerranée Infection, Aix Marseille Université, Marseille, France.

Gene&GreenTK, Marseille, France.

出版信息

Front Pharmacol. 2018 Mar 7;9:203. doi: 10.3389/fphar.2018.00203. eCollection 2018.

Abstract

Numerous bacteria utilize molecular communication systems referred to as quorum sensing (QS) to synchronize the expression of certain genes regulating, among other aspects, the expression of virulence factors and the synthesis of biofilm. To achieve this process, bacteria use signaling molecules, known as autoinducers (AIs), as chemical messengers to share information. Naturally occurring strategies that interfere with bacterial signaling have been extensively studied in recent years, examining their potential to control bacteria. To interfere with QS, bacteria use quorum sensing inhibitors (QSIs) to block the action of AIs and quorum quenching (QQ) enzymes to degrade signaling molecules. Recent studies have shown that these strategies are promising routes to decrease bacterial pathogenicity and decrease biofilms, potentially enhancing bacterial susceptibility to antimicrobial agents including antibiotics and bacteriophages. The efficacy of QSIs and QQ enzymes has been demonstrated in various animal models and are now considered in the development of new medical devices against bacterial infections, including dressings, and catheters for enlarging the therapeutic arsenal against bacteria.

摘要

许多细菌利用被称为群体感应(QS)的分子通信系统来同步某些基因的表达,这些基因调控着毒力因子的表达和生物膜的合成等多个方面。为实现这一过程,细菌使用被称为自诱导物(AIs)的信号分子作为化学信使来共享信息。近年来,干扰细菌信号传导的天然策略得到了广泛研究,以考察它们控制细菌的潜力。为干扰群体感应,细菌使用群体感应抑制剂(QSIs)来阻断自诱导物的作用,并使用群体猝灭(QQ)酶来降解信号分子。最近的研究表明,这些策略是降低细菌致病性和减少生物膜的有前景的途径,可能会增强细菌对包括抗生素和噬菌体在内的抗菌剂的敏感性。群体感应抑制剂和群体猝灭酶的功效已在各种动物模型中得到证实,目前在开发针对细菌感染的新型医疗器械(包括敷料和导管)时也会考虑使用它们,以扩大对抗细菌的治疗手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f522/5845960/44f082ce0a72/fphar-09-00203-g0001.jpg

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