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使用流式细胞术快速评估商业制剂中存活但不可培养的凝结芽孢杆菌MTCC 5856

Rapid assessment of viable but non-culturable Bacillus coagulans MTCC 5856 in commercial formulations using Flow cytometry.

作者信息

Majeed Muhammed, Majeed Shaheen, Nagabhushanam Kalyanam, Punnapuzha Ardra, Philip Sheena, Mundkur Lakshmi

机构信息

Sami Labs Limited, Peenya Industrial Area, Bangalore, Karnataka, India.

Sabinsa Corporation, Payson, UT, United States of America.

出版信息

PLoS One. 2018 Feb 23;13(2):e0192836. doi: 10.1371/journal.pone.0192836. eCollection 2018.

Abstract

Accurate enumeration of bacterial count in probiotic formulation is imperative to ensure that the product adheres to regulatory standards and citation in consumer product label. Standard methods like plate count, can enumerate only replicating bacterial population under selected culture conditions. Viable but non culturable bacteria (VBNC) retain characteristics of living cells and can regain cultivability by a process known as resuscitation. This is a protective mechanism adapted by bacteria to evade stressful environmental conditions. B. coagulans MTCC 5856(LactoSpore®) is a probiotic endospore which can survive for decades in hostile environments without dividing. In the present study, we explored the use of flow cytometry to enumerate the viable count of B. coagulans MTCC 5856 under acidic and alkaline conditions, high temperature and in commercial formulations like compressed tablets and capsules. Flow cytometry (FCM) was comparable to plate count method when the spores were counted at physiological conditions. We show that VBNC state is induced in B. coagulans MTCC 5856by high temperature and acidic pH. The cells get resuscitated under physiological conditions and FCM was sensitive to detect the VBNC spores. Flow cytometry showed excellent ability to assess the viable spore count in commercial probiotic formulations of B. coagulans MTCC 5856. The results establish Flow cytometry as a reliable method to count viable bacteria in commercial probiotic preparations. Sporulation as well as existence as VBNC could contribute to the extreme stability of B. coagulans MTCC 5856.

摘要

准确测定益生菌制剂中的细菌数量对于确保产品符合监管标准并在消费品标签中进行标注至关重要。像平板计数这样的标准方法只能在选定的培养条件下对可复制的细菌群体进行计数。活的但不可培养的细菌(VBNC)保留着活细胞的特征,并且可以通过一种称为复苏的过程恢复可培养性。这是细菌为逃避恶劣环境条件而采用的一种保护机制。凝结芽孢杆菌MTCC 5856(LactoSpore®)是一种益生菌芽孢,它可以在恶劣环境中存活数十年而不分裂。在本研究中,我们探索了使用流式细胞术来测定凝结芽孢杆菌MTCC 5856在酸性和碱性条件、高温以及在压缩片剂和胶囊等商业制剂中的活菌数。当在生理条件下对芽孢进行计数时,流式细胞术(FCM)与平板计数法相当。我们发现高温和酸性pH会诱导凝结芽孢杆菌MTCC 5856进入VBNC状态。细胞在生理条件下会复苏,并且FCM对检测VBNC芽孢很敏感。流式细胞术显示出在评估凝结芽孢杆菌MTCC 5856商业益生菌制剂中活菌芽孢数方面具有出色的能力。这些结果确立了流式细胞术作为一种可靠的方法来计数商业益生菌制剂中的活菌。芽孢形成以及作为VBNC的存在可能有助于凝结芽孢杆菌MTCC 5856的极端稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aae5/5825061/36f150cfcad0/pone.0192836.g001.jpg

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