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Determination of Complement-Mediated Killing of Bacteria by Viability Staining and Bioluminescence

机译:活力染色和生物发光法测定补体介导的细菌杀伤

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摘要

Complement-mediated killing of bacteria was monitored by flow cytometric, luminometric, and conventional plate counting methods. A flow cytometric determination of bacterial viability was carried out by using dual staining with a LIVE/DEAD BacLight bacterial viability kit. In addition to the viable cell population, several other populations emerged in the fluorescence histogram, and there was a dramatic decrease in the total cell count in the light-scattering histogram in the course of the complement reaction. To permit luminometric measurements, Bacillus subtilis and Escherichia coli were made bioluminescent by expressing an insect luciferase gene. Addition of substrate after the complement reaction resulted in bioluminescence, the level of which was a measure of the viable cell population. All three methods gave essentially the same killing rate, suggesting that the bacteriolytic activity of serum complement can be measured rapidly and conveniently by using viability stains or bioluminescence. In principle, any bacterial strain can be used for viability staining and flow cytometric analysis. For the bioluminescence measurements genetically engineered bacteria are needed, but the advantage is that it is possible to screen automatically a large number of samples.
机译:补体介导的细菌杀灭通过流式细胞术,发光法和常规板计数方法进行监测。通过使用LIVE / DEAD BacLight细菌生存力试剂盒进行双重染色,对细菌生存力进行流式细胞术测定。除活细胞群外,荧光直方图中还出现了其他几个群,并且在补体反应过程中,光散射直方图中的总细胞数急剧减少。为了进行发光测量,通过表达昆虫荧光素酶基因使枯草芽孢杆菌和大肠杆菌生物发光。补体反应后添加底物导致生物发光,其水平是活细胞总数的量度。所有这三种方法的杀灭率基本相同,这表明可以通过使用存活力染色或生物发光来快速方便地测定血清补体的细菌分解活性。原则上,任何细菌菌株均可用于生存力染色和流式细胞仪分析。对于生物发光测量,需要基因工程细菌,但优点是可以自动筛选大量样品。

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