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通过过滤和生物发光快速分离并定量混合微生物。

Rapid separation and quantitation of mixed microorganisms by filtration and bioluminescence.

作者信息

Tsai T S, Ramey N J, Everett L J

出版信息

Proc Soc Exp Biol Med. 1986 Oct;183(1):74-80. doi: 10.3181/00379727-183-42388.

Abstract

A membrane filtration/bioluminescence system was developed for the differentiation and quantitation of mixed populations of microorganisms. Samples containing microorganisms were filtered through two membrane filters of descending pore size. The microorganisms retained on the filter contain ATP that can be extracted and measured on the filter via the firefly luciferase-luciferin bioluminescence assay. Results, obtained in less than 20 min, show a good correlation (r greater than or equal to 0.95) between the light produced and the number of organisms in the sample. Using these techniques, Escherichia coli can be separated from yeast or mold and measured in samples containing both microorganisms. When lysostaphin is used to selectively lyse Staphylococci on the filter, the specific quantification of these bacteria among other microorganisms can also be accomplished. The filtration/bioluminescence technique offers the potential of being a rapid and sensitive method to differentiate and detect microorganisms, by selective sizing or lysing, in a variety of samples.

摘要

开发了一种膜过滤/生物发光系统,用于区分和定量混合微生物群体。含有微生物的样品通过孔径递减的两个膜过滤器进行过滤。保留在过滤器上的微生物含有ATP,可通过萤火虫荧光素酶-荧光素生物发光测定法在过滤器上提取和测量。在不到20分钟内获得的结果表明,产生的光与样品中的生物数量之间具有良好的相关性(r大于或等于0.95)。使用这些技术,可以从酵母或霉菌中分离出大肠杆菌,并在含有两种微生物的样品中进行测量。当使用溶葡萄球菌素选择性地裂解过滤器上的葡萄球菌时,也可以实现这些细菌在其他微生物中的特异性定量。过滤/生物发光技术具有成为一种快速、灵敏的方法的潜力,可通过选择性筛分或裂解来区分和检测各种样品中的微生物。

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