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Assessment of high pressure induced damage on Lactobacillus rhamnosus GG by flow cytometry

机译:流式细胞术评估高压对鼠李糖乳杆菌GG的损伤

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To assess the mode of action of high-pressure treatment on Lactobacillus rhamnosus GG (LGG) a flow cytometric analysis was applied. This fluorescence-based approach could give additional insights on process-induced changes of cellular events, which were not explicitly assessable by culture techniques, such as cellular inactivation sites, specific metabolic activities, etc. To achieve this goal, combined staining with carboxyfluorescein diacetate (cFDA) and propidium iodide (PI) was applied. With this staining strategy pressure-induced changes of microbial esterase activity and membrane integrity were monitored. Moreover, the ability of the cells to extrude intracellular accumulated carboxyfluorescein (cF) upon energisation was ascertained as an additional vitality marker. The determination of microbial viability status with help of different physiological and metabolic parameters and their relative changes following pressure treatment is of increasing importance in evaluating sterilisation and/or pasteurisation processes. Comparison of conventional culture techniques with flow cytometric viability assessment (after pressure treatments at 100-600 MPa) revealed the occurrence of certain cell populations, which were stressed and lost their ability to grow on agar, but still showed metabolic activity. This fraction is often described as viable but not culturable cells. The presence of such injured bacteria in food might be critical in terms of their potential activity on excreting toxic or food spoiling metabolites.
机译:为了评估高压治疗对鼠李糖乳杆菌GG(LGG)的作用方式,应用了流式细胞仪分析。这种基于荧光的方法可以提供有关过程事件引起的细胞事件变化的更多见解,而这些变化是无法通过培养技术明确评估的,例如细胞失活位点,特定的代谢活性等。为实现这一目标,可将羧基荧光素二乙酸酯与染料联用( cFDA)和碘化丙锭(PI)。通过这种染色策略,可以监测压力引起的微生物酯酶活性和膜完整性的变化。此外,确定了细胞在通电后挤出细胞内积累的羧基荧光素(cF)的能力,将其作为额外的活力指标。在评估灭菌和/或巴氏灭菌过程中,借助不同的生理和代谢参数及其在压力处理后的相对变化来确定微生物的生存状态越来越重要。将常规培养技术与流式细胞术生存力评估(在100-600 MPa的压力处理后)进行比较后,发现某些细胞群的出现,这些细胞群受到压力并失去了在琼脂上生长的能力,但仍显示出代谢活性。该级分通常被描述为可存活但不可培养的细胞。就它们对排泄有毒或破坏食物的代谢物的潜在活性而言,在食物中存在这种受损细菌可能至关重要。

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