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用于表征抗菌治疗的多参数流式细胞术的最新进展

Recent Advances on Multi-Parameter Flow Cytometry to Characterize Antimicrobial Treatments.

作者信息

Léonard Lucie, Bouarab Chibane Lynda, Ouled Bouhedda Balkis, Degraeve Pascal, Oulahal Nadia

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, ISARA Lyon, BioDyMIA (Bioingénierie et Dynamique Microbienne aux Interfaces Alimentaires), Equipe Mixte d'Accueil n°3733, IUT Lyon 1 Bourg en Bresse, France.

出版信息

Front Microbiol. 2016 Aug 8;7:1225. doi: 10.3389/fmicb.2016.01225. eCollection 2016.

Abstract

The investigation on antimicrobial mechanisms is a challenging and crucial issue in the fields of food or clinical microbiology, as it constitutes a prerequisite to the development of new antimicrobial processes or compounds, as well as to anticipate phenomenon of microbial resistance. Nowadays it is accepted that a cells population exposed to a stress can cause the appearance of different cell populations and in particular sub-lethally compromised cells which could be defined as viable but non-culturable (VBNC). Recent advances on flow cytometry (FCM) and especially on multi-parameter flow cytometry (MP-FCM) provide the opportunity to obtain high-speed information at real time on damage at single-cell level. This review gathers MP-FCM methodologies based on individual and simultaneous staining of microbial cells employed to investigate their physiological state following different physical and chemical antimicrobial treatments. Special attention will be paid to recent studies exploiting the possibility to corroborate MP-FCM results with additional techniques (plate counting, microscopy, spectroscopy, molecular biology techniques, membrane modeling) in order to elucidate the antimicrobial mechanism of action of a given antimicrobial treatment or compound. The combination of MP-FCM methodologies with these additional methods is namely a promising and increasingly used approach to give further insight in differences in microbial sub-population evolutions in response to antimicrobial treatments.

摘要

对抗菌机制的研究是食品或临床微生物学领域中一个具有挑战性且至关重要的问题,因为它是开发新的抗菌工艺或化合物以及预测微生物耐药现象的先决条件。如今,人们普遍认为,暴露于压力下的细胞群体可能会导致不同细胞群体的出现,尤其是亚致死性受损细胞,这些细胞可被定义为活的但不可培养(VBNC)。流式细胞术(FCM),尤其是多参数流式细胞术(MP-FCM)的最新进展,为在单细胞水平实时获取有关损伤的高速信息提供了机会。本综述收集了基于微生物细胞个体和同时染色的MP-FCM方法,用于研究不同物理和化学抗菌处理后微生物细胞的生理状态。将特别关注近期的研究,这些研究利用了用其他技术(平板计数、显微镜检查、光谱学、分子生物学技术、膜建模)来证实MP-FCM结果的可能性,以阐明给定抗菌处理或化合物的抗菌作用机制。MP-FCM方法与这些额外方法的结合,是一种很有前景且越来越常用的方法,可进一步深入了解微生物亚群在抗菌处理后的进化差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dec7/4976717/bbac59f82065/fmicb-07-01225-g0001.jpg

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