首页> 外文期刊>Journal of Microbiological Methods >Use of viability staining in combination with flow cytometry for rapid viability assessment of Lactobacillus rhamnosus GG in complex protein matrices.
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Use of viability staining in combination with flow cytometry for rapid viability assessment of Lactobacillus rhamnosus GG in complex protein matrices.

机译:活力染色与流式细胞仪结合使用可快速评估鼠李糖乳杆菌GG在复杂蛋白基质中的活力。

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The aim of this study was to demonstrate that flow cytometry (FACS) could potentially be employed for rapid viability assessment of probiotic bacteria immobilized or encapsulated in complex matrices. Lactobacillus rhamnosus GG was immobilized within six different protein environments using whey protein isolate (WPI) and yoghurt matrices and encapsulated within protein micro-beads, all of which ranged in structural complexity. Following a series of environmental-stress trials, survival of the strain was examined using FACS compared to traditional plate count techniques. Cell extraction and digestive pre-treatments were designed to release cells and reduce the protein background, respectively, which represent compositional obstacles for efficient FACS analysis. Physico-chemical properties of protein-probiotic components revealed the mechanism necessary for efficient cell delivery during FACS analysis. This assay required 40 min sample preparation and distinct functional populations were discriminated based on fluorescent properties of thiazole orange (TO) and propidium iodide (PI). This assay yielded 45-50 samples/h, a detection range of 102-1010 cfu/ml of homogenate and generated correlation coefficients (r) of 0.95, 0.92 and 0.93 in relation to standard plate counts during heat, acid and storage trials, respectively. In conclusion, this methodology provides impetus for dynamic progression of FACS for rapid viability assessment of live bacteria immobilized/encapsulated within complex protein systems
机译:这项研究的目的是证明流式细胞仪(FACS)可以潜在地用于固定或封装在复杂基质中的益生菌的快速生存力评估。使用乳清蛋白分离物(WPI)和酸奶基质将鼠李糖乳杆菌GG固定在六种不同的蛋白环境中,并封装在蛋白微珠中,所有这些蛋白的结构复杂程度不一。经过一系列环境压力试验,与传统的平板计数技术相比,使用FACS检查了菌株的存活率。细胞提取和消化预处理分别设计为释放细胞并减少蛋白质背景,这代表了有效FACS分析的组成障碍。蛋白质益生菌成分的理化特性揭示了在FACS分析过程中有效递送细胞所必需的机制。此测定需要40分钟的样品准备时间,并且根据噻唑橙(TO)和碘化丙啶(PI)的荧光特性来区分不同的功能种群。该测定产生了45-50个样品/ h,匀浆的检测范围为102-1010 cfu / ml,相对于加热,酸和存储试验中的标准板数,所产生的相关系数(r)分别为0.95、0.92和0.93。 。总之,该方法为FACS的动态发展提供了动力,可快速评估固定/封装在复杂蛋白质系统中的活细菌的生存力

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