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流式细胞术在食品工业中快速微生物检测与表征的潜力——综述

Potential of Flow Cytometric Approaches for Rapid Microbial Detection and Characterization in the Food Industry-A Review.

作者信息

Zand Elena, Froehling Antje, Schoenher Christoph, Zunabovic-Pichler Marija, Schlueter Oliver, Jaeger Henry

机构信息

Department of Food Science and Technology, Institute of Food Technology, University of Natural Resources and Life Sciences Vienna (BOKU), 1190 Vienna, Austria.

Leibniz Institute for Agricultural Engineering and Bioeconomy, Quality and Safety of Food and Feed, 14469 Potsdam, Germany.

出版信息

Foods. 2021 Dec 15;10(12):3112. doi: 10.3390/foods10123112.

Abstract

As microbial contamination is persistent within the food and bioindustries and foodborne infections are still a significant cause of death, the detection, monitoring, and characterization of pathogens and spoilage microorganisms are of great importance. However, the current methods do not meet all relevant criteria. They either show (i) inadequate sensitivity, rapidity, and effectiveness; (ii) a high workload and time requirement; or (iii) difficulties in differentiating between viable and non-viable cells. Flow cytometry (FCM) represents an approach to overcome such limitations. Thus, this comprehensive literature review focuses on the potential of FCM and fluorescence in situ hybridization (FISH) for food and bioindustry applications. First, the principles of FCM and FISH and basic staining methods are discussed, and critical areas for microbial contamination, including abiotic and biotic surfaces, water, and air, are characterized. State-of-the-art non-specific FCM and specific FISH approaches are described, and their limitations are highlighted. One such limitation is the use of toxic and mutagenic fluorochromes and probes. Alternative staining and hybridization approaches are presented, along with other strategies to overcome the current challenges. Further research needs are outlined in order to make FCM and FISH even more suitable monitoring and detection tools for food quality and safety and environmental and clinical approaches.

摘要

由于微生物污染在食品和生物产业中持续存在,且食源性感染仍是一个重要的死亡原因,因此病原体和腐败微生物的检测、监测及特性鉴定至关重要。然而,目前的方法并不满足所有相关标准。它们要么表现出:(i)灵敏度、速度和有效性不足;(ii)工作量大且耗时;要么(iii)难以区分活细胞和死细胞。流式细胞术(FCM)是一种克服这些局限性的方法。因此,这篇全面的文献综述聚焦于FCM和荧光原位杂交(FISH)在食品和生物产业应用中的潜力。首先,讨论了FCM和FISH的原理以及基本染色方法,并对微生物污染的关键领域进行了特性描述,包括非生物和生物表面、水和空气。描述了最新的非特异性FCM和特异性FISH方法,并强调了它们的局限性。其中一个局限性是使用了有毒和致突变的荧光染料及探针。介绍了替代染色和杂交方法,以及克服当前挑战的其他策略。概述了进一步的研究需求,以使FCM和FISH更适合用于食品质量和安全以及环境和临床方法的监测和检测工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa0f/8701031/55f965a2d960/foods-10-03112-g001.jpg

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