微生物检测的流式细胞术技术。

Hazel M Davey
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引用次数: 59

摘要

流式细胞术(FCM)是一种技术,它允许人们快速和单独分析细胞,并允许定量分析一种或多种特性在群体中的分布。因此,与传统的生物细胞分析方法相比,它提供了许多优点。从历史上看,该技术已广泛应用于哺乳动物细胞的研究,但其在微生物学中的应用受到更多限制;这主要是由于微生物的体积更小,因此可以从它们那里获得的光信号也更小。近年来,光源和光学的发展,以及更明亮、光谱多样化的染料,减少了这种屏障,流式细胞仪现在是许多微生物研究机构的重要工具。FCM在工业和临床环境中检测微生物方面发挥着越来越大的作用。为防止隐孢子虫病和军团病等人类疾病的爆发以及检测生物战或生物恐怖主义行为而进行的环境监测都适用于流式细胞术研究。本文综述了流式细胞仪在微生物细胞检测中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flow cytometric techniques for the detection of microorganisms.

Flow cytometry (FCM) is a technique, which allows one to analyse cells rapidly and individually, and permits the quantitative analysis of distributions of a property or properties in a population. It therefore offers many advantages over conventional measurements for the analysis of biological cells. Historically the technique has been widely applied for the study of mammalian cells, but its use in microbiology has been more limited; this is mainly a consequence of the smaller size of microbes, which results in the smaller optical signals that can be obtained from them. Developments in light sources and optics, together with brighter, spectrally-diverse dyes have reduced this barrier over recent years and the flow cytometer is now an essential tool in many microbiological research establishments. FCM has an increasing role to play in the detection of microbes in both industrial and clinical settings. Environmental monitoring to prevent outbreaks of human diseases such as cryptosporidiosis and Legionnaires' disease and to detect acts of biowarfare or bioterrorism are all amenable to flow cytometric study. This review seeks to highlight the role of the flow cytometer in the detection of microbial cells.

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