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A new method to determine initial viability of entrapped cells using fluorescent nucleic acid staining

机译:一种新方法,用于使用荧光核酸染色测定捕株细胞初始活力的方法

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摘要

Entrapped bacterial cells are widely used in several biotechnological applications. Cell entrapment procedures are known to affect the viability of bacterial cells. To determine the effect of entrapment procedures on viability of bacterial cells, dissolution of the entrapment matrices using chelating agents or heat is required immediately after the entrapment is completed. Chelating agents and heat applied in the matrix dissolution reduce cell viability and in turn hinder accurate quantification of viable cells. In this study, a method to determine the effect of entrapment procedure on bacterial cell viability which involves entrapping cells directly onto glass slides was developed. The developed method showed less viability reduction than the methods requiring matrix dissolution. The percentage of live cells in the culture before entrapment ranged from 54% to 74%, while the percent of live cells after entrapment determined by the developed method was 39-62%.
机译:捕获的细菌细胞广泛用于几种生物技术应用。 已知细胞夹紧程序影响细菌细胞的活力。 为了确定夹带程序对细菌细胞的活力的影响,在夹带完成后,立即需要使用螯合剂或热量抑制基质的溶解。 螯合剂和热量在基质溶解中施加,降低细胞活力,反过来阻碍了活细胞的准确定量。 在该研究中,开发了一种方法,用于确定累积过程对涉及将细胞直接捕获到玻璃载玻片上的细菌细胞活力的施加过程的方法。 开发方法显示出比需要基质溶解的方法的可存活率降低。 夹带前培养物中活细胞的百分比范围为54%至74%,而开发方法确定后的活细胞百分比为39-62%。

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