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自包囊与冷冻保护剂结合对提高益生菌冻干存活率的效果。

Efficacy of the incorporation between self-encapsulation and cryoprotectants on improving the freeze-dried survival of probiotic bacteria.

作者信息

Nguyen Thi-Tho, Nguyen Phu-Tho, Nguyen Thi-To-Uyen, Nguyen Thi-Bich-Nhu, Bui Nhi-Binh, Nguyen Huu-Thanh

机构信息

Hutech Institute of Applied Science, HUTECH University, Ho Chi Minh City, Vietnam.

Graduate University of Sciences and Technology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.

出版信息

J Appl Microbiol. 2022 Apr;132(4):3217-3225. doi: 10.1111/jam.15473. Epub 2022 Feb 16.

Abstract

AIMS

This study aimed to improve the viability of probiotic bacteria during freeze-drying by the combination of self-encapsulation and cryoprotectants.

METHODS AND RESULTS

Lactiplantibacillus plantarum VAL6 and Lactobacillus acidophilus VAR1 were exposed to environmental stresses including temperature, pH and increased CO concentration before performing freeze-drying with the addition of cryoprotectants. The results proved that tested stresses can stimulate the bacteria to synthesize more extracellular polymeric substances to form self-encapsulation that increases their freeze-dried viability. In combination with cryoprotectants to form double-layered microencapsulation, L. plantarum VAL6 stressed at pH 3.5 in combination with whey protein isolate could achieve the highest Improving Cell Viability of 4361-fold, while L. acidophilus VAR1 stressed at 25 C in combination with alginate gave a maximum Improving Cell Viability of 73.33-fold.

CONCLUSIONS

The combination of self-encapsulation and cryoprotectants significantly improves the freeze-dried viability of probiotics.

SIGNIFICANCE AND IMPACT OF THE STUDY

This is the first report that uses environmental stress to stimulate extracellular polymeric substance synthesis for self-encapsulation formation combined with the addition of cryoprotectants to enhance the freeze-dried survival of probiotics. This could be a novel approach in improving the viability of probiotic strains for various applications.

摘要

目的

本研究旨在通过自包囊化与冷冻保护剂相结合的方法提高益生菌在冷冻干燥过程中的存活率。

方法与结果

在添加冷冻保护剂进行冷冻干燥之前,将植物乳杆菌VAL6和嗜酸乳杆菌VAR1暴露于包括温度、pH值和二氧化碳浓度增加等环境压力下。结果证明,所测试的压力可刺激细菌合成更多胞外聚合物以形成自包囊化,从而提高其冷冻干燥存活率。与冷冻保护剂结合形成双层微胶囊,在pH值为3.5的环境下受胁迫的植物乳杆菌VAL6与乳清蛋白分离物结合,可实现最高4361倍的细胞活力提高,而在25℃下受胁迫的嗜酸乳杆菌VAR1与海藻酸盐结合,最大细胞活力提高倍数为73.33倍。

结论

自包囊化与冷冻保护剂相结合可显著提高益生菌的冷冻干燥存活率。

研究的意义与影响

这是首次报道利用环境压力刺激胞外聚合物合成以形成自包囊化,并结合添加冷冻保护剂来提高益生菌冷冻干燥存活率的研究。这可能是一种提高益生菌菌株在各种应用中存活率的新方法。

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