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Viability states of bacteria-Specific mechanisms of selected probes

机译:细菌的生存状态-选定探针的特定机制

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Single cell techniques like flow cytometry combined with viability staining can help to obtain information on viability states of bacteria. Many fluorescent dyes are available for this purpose and can be chosen according to the available excitation source, the species used, and the background of scientific questions and relevant specifications. Within this short overview, we focus on two diverse groups of bacteria: the gram2 Escherichia coli and representatives of the gram+ Mycobacterium to demonstrate differences and similarities in dye uptake principles, processing and binding. We call for attention to possible diverse responses of different species to various viability assays. The cell surface structure of bacteria and the chemical properties of fluorescent probes considerably determine the success of a certain staining practice. Particular focus was drawn on analysis of membrane integrity, uptake of substrates and transformation of fluorogenic substrates.
机译:单细胞技术,如流式细胞仪结合生存力染色可以帮助获得有关细菌生存状态的信息。许多荧光染料可用于此目的,并可根据可用的激发源,所用物种以及科学问题和相关规格的背景来选择。在这个简短的概述中,我们将重点放在细菌的两个不同类别上:革兰氏大肠杆菌2和革兰氏+分枝杆菌的代表,以证明在染料吸收原理,加工和结合方面的差异和相似性。我们呼吁注意不同物种对各种生存能力测定的可能不同反应。细菌的细胞表面结构和荧光探针的化学性质在很大程度上决定了某种染色实践的成功。特别关注的是膜完整性,底物吸收和荧光底物转化的分析。

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