流式细胞术和异质微生物群体的细胞分选:单细胞分析的重要性。

H M Davey, D B Kell
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引用次数: 68

摘要

最基本的问题,如细胞是否活着,在能够分裂或形成菌落的意义上,有时可能很难回答,因为即使是无菌微生物培养物也是极其异质的。试图将活力(单个细胞的特性)与培养变量(如ATP含量、呼吸活动等)的宏观测量相关联的分析必然会失败。因此,有必要对单个细胞进行生理测量。流式细胞术就是这样一种技术,它允许人们对细胞进行快速和单独的分析,并允许对微生物异质性进行定量分析。因此,它提供了许多优势,比常规的测量和更多的探索性分析微生物特性。虽然这项技术已被广泛应用于哺乳动物细胞的研究,但直到最近,它在微生物学中的应用还受到很大的限制,这主要是因为微生物的尺寸较小,因此从它们身上获得的光信号也较小。由于这些技术障碍不再存在,使用适当染色的流式细胞术已被用于微生物细胞的快速区分和鉴定,用于快速评估活力和丰富的其他更详细的生理特性的异质分布,用于抗菌药物-细胞相互作用的分析,以及用于分离生物技术感兴趣的高产菌株。流式细胞术分析提供了丰富的多元数据,并设计了特殊的方法来利用这些数据。正在进行的进展意味着现代流式细胞仪现在可以被非专业人员使用,以实现我们对微生物异质性理解的复兴。
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Flow cytometry and cell sorting of heterogeneous microbial populations: the importance of single-cell analyses.

The most fundamental questions such as whether a cell is alive, in the sense of being able to divide or to form a colony, may sometimes be very hard to answer, since even axenic microbial cultures are extremely heterogeneous. Analyses that seek to correlate such things as viability, which is a property of an individual cell, with macroscopic measurements of culture variables such as ATP content, respiratory activity, and so on, must inevitably fail. It is therefore necessary to make physiological measurements on individual cells. Flow cytometry is such a technique, which allows one to analyze cells rapidly and individually and permits the quantitative analysis of microbial heterogeneity. It therefore offers many advantages over conventional measurements for both routine and more exploratory analyses of microbial properties. While the technique has been widely applied to the study of mammalian cells, is use in microbiology has until recently been much more limited, largely because of the smaller size of microbes and the consequently smaller optical signals obtainable from them. Since these technical barriers no longer hold, flow cytometry with appropriate stains has been used for the rapid discrimination and identification of microbial cells, for the rapid assessment of viability and of the heterogeneous distributions of a wealth of other more detailed physiological properties, for the analysis of antimicrobial drug-cell interactions, and for the isolation of high-yielding strains of biotechnological interest. Flow cytometric analyses provide an abundance of multivariate data, and special methods have been devised to exploit these. Ongoing advances mean that modern flow cytometers may now be used by nonspecialists to effect a renaissance in our understanding of microbial heterogeneity.

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