Multiparametric Flow Cytometry and Cell Sorting for the Assessment of Viable, Injured, and Dead Bifidobacterium Cells during Bile Salt Stress

流式细胞术 碘化丙啶 活力测定 人口 生物 单元格排序 染色 细胞仪 细胞计数 分子生物学 微生物学 细胞 化学 生物化学 细胞凋亡 程序性细胞死亡 医学 细胞周期 环境卫生 遗传学
作者
Kaouther Ben Amor,Pieter Breeuwer,Patrick Verbaarschot,F.M. Rombouts,A.D.L. Akkermans,Willem M. de Vos,Tjakko Abee
出处
期刊:Applied and Environmental Microbiology [American Society for Microbiology]
卷期号:68 (11): 5209-5216 被引量:272
标识
DOI:10.1128/aem.68.11.5209-5216.2002
摘要

ABSTRACT Using a flow cytometry-based approach, we assessed the viability of Bifidobacterium lactis DSM 10140 and Bifidobacterium adolescentis DSM 20083 during exposure to bile salt stress. Carboxyfluorescein diacetate (cFDA), propidium iodide (PI), and oxonol [DiBAC 4 (3)] were used to monitor esterase activity, membrane integrity, and membrane potential, respectively, as indicators of bacterial viability. Single staining with these probes rapidly and noticeably reflected the behavior of the two strains during stress exposure. However, the flow cytometry results tended to overestimate the viability of the two strains compared to plate counts, which appeared to be related to the nonculturability of a fraction of the population as a result of sublethal injury caused by bile salts. When the cells were simultaneously stained with cFDA and PI, flow cytometry and cell sorting revealed a striking physiological heterogeneity within the stressed bifidobacterium population. Three subpopulations could be identified based on their differential uptake of the probes: cF-stained, cF and PI double-stained, and PI-stained subpopulations, representing viable, injured, and dead cells, respectively. Following sorting and recovery, a significant fraction of the double-stained subpopulation (40%) could resume growth on agar plates. Our results show that in situ assessment of the physiological activity of stressed bifidobacteria using multiparameter flow cytometry and cell sorting may provide a powerful and sensitive tool for assessment of the viability and stability of probiotics.
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