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首页> 外文期刊>Enzyme and Microbial Technology >Strengths and weaknesses in the determination of Saccharomyces cerevisiae cell viability by ATP-based bioluminescence assay
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Strengths and weaknesses in the determination of Saccharomyces cerevisiae cell viability by ATP-based bioluminescence assay

机译:基于ATP的生物发光测定法确定酿酒酵母细胞活力的优缺点

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摘要

Due to its sensitivity and speed of execution, detection of ATP by luciferin-luciferase reaction is a widely spread system to highlight cell viability. The paper describes the methodology followed to successfully run the assay in the presence of yeast cells of two strains of the yeast Saccharomyces cerevisiae, BY4741 and CEN.PK2-1C and emphasizes the importance of correctly determining the contact time between the lysing agent and the yeast cells. Once this was established, luciferin-luciferase reaction was exploited to determine the maximum specific rate of growth, as well as cell viability in a series of routine tests. The results obtained in this preliminary study highlighted that using luciferin-luciferase can imply an over-estimation of maximum specific growth rate with respect to that determined by optical density and/or viable count. On the contrary, the bioluminescence assay gave the possibility to highlight, if employed together with viable count, physiological changes occurring in yeast cells as response to stressful environmental conditions such as those deriving from exposure of yeast cells to high temperature or those depending on the operative conditions applied during fed-batch operations.
机译:由于其敏感性和执行速度,通过萤光素-萤光素酶反应检测ATP是一个广泛传播的系统,可彰显细胞活力。本文介绍了在两种酿酒酵母BY4741和CEN.PK2-1C的酵母细胞存在下成功进行测定的方法,并强调了正确确定裂解剂与酵母接触时间的重要性细胞。一旦确定了这一点,就可以在一系列常规测试中利用萤光素-萤光素酶反应来确定最大的特定生长速率以及细胞活力。在该初步研究中获得的结果强调,相对于由光密度和/或可行计数确定的最大比生长速率,使用萤光素-荧光素酶可能暗示了最大比生长速率的高估。相反,如果与可行的计数一起使用,则生物发光测定法有可能突出显示酵母细胞中发生的生理变化,以应对压力环境条件(例如,由于酵母细胞暴露于高温下而产生的生理条件或取决于操作环境的条件)分批补料操作中应用的条件。

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