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流化床干燥法生产的乳酸菌发酵剂的流式细胞仪活力评估

Flow cytometric viability assessment of lactic acid bacteria starter cultures produced by fluidized bed drying.

作者信息

Bensch Gerald, Rüger Marc, Wassermann Magdalena, Weinholz Susann, Reichl Udo, Cordes Christiana

机构信息

Department of Applied Biosciences and Process Engineering, Anhalt University of Applied Sciences, Köthen, Germany.

出版信息

Appl Microbiol Biotechnol. 2014 Jun;98(11):4897-909. doi: 10.1007/s00253-014-5592-z. Epub 2014 Mar 4.

Abstract

For starter culture production, fluidized bed drying is an efficient and cost-effective alternative to the most frequently used freeze drying method. However, fluidized bed drying also poses damaging or lethal stress to bacteria. Therefore, investigation of impact of process variables and conditions on viability of starter cultures produced by fluidized bed drying is of major interest. Viability of bacteria is most frequently assessed by plate counting. While reproductive growth of cells can be characterized by the number of colony-forming units, it cannot provide the number of viable-but-nonculturable cells. However, in starter cultures, these cells still contribute to the fermentation during food production. In this study, flow cytometry was applied to assess viability of Lactobacillus plantarum starter cultures by membrane integrity analysis using SYBR®Green I and propidium iodide staining. The enumeration method established allowed for rapid, precise and sensitive determination of viable cell concentration, and was used to investigate effects of fluidized bed drying and storage on viability of L. plantarum. Drying caused substantial membrane damage on cells, most likely due to dehydration and oxidative stress. Nevertheless, high bacterial survival rates were obtained, and granulates contained in the average 2.7 × 10(9) viable cells/g. Furthermore, increased temperatures reduced viability of bacteria during storage. Differences in results of flow cytometry and plate counting suggested an occurrence of viable-but-nonculturable cells during storage. Overall, flow cytometric viability assessment is highly feasible for rapid routine in-process control in production of L. plantarum starter cultures, produced by fluidized bed drying.

摘要

对于发酵剂培养物的生产,流化床干燥是一种高效且经济高效的替代方法,可替代最常用的冷冻干燥方法。然而,流化床干燥也会对细菌造成损害或致死性应激。因此,研究工艺变量和条件对流化床干燥生产的发酵剂培养物活力的影响具有重要意义。细菌活力最常通过平板计数来评估。虽然细胞的繁殖生长可以通过菌落形成单位的数量来表征,但它无法提供活但不可培养细胞的数量。然而,在发酵剂培养物中,这些细胞在食品生产过程中仍对发酵有贡献。在本研究中,应用流式细胞术通过使用SYBR®Green I和碘化丙啶染色的膜完整性分析来评估植物乳杆菌发酵剂培养物的活力。所建立的计数方法能够快速、精确且灵敏地测定活细胞浓度,并用于研究流化床干燥和储存对植物乳杆菌活力的影响。干燥对细胞造成了严重的膜损伤,最可能是由于脱水和氧化应激。尽管如此,仍获得了较高的细菌存活率,颗粒中平均含有2.7×10⁹个活细胞/克。此外,储存期间温度升高会降低细菌的活力。流式细胞术和平板计数结果的差异表明储存期间存在活但不可培养的细胞。总体而言,流式细胞术活力评估对于流化床干燥生产的植物乳杆菌发酵剂培养物的快速常规过程控制非常可行。

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