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利用动态胃肠模型 TIM 研究酸奶菌嗜热链球菌在模拟人体肠道中的存活及其代谢活性。

Use of the dynamic gastro-intestinal model TIM to explore the survival of the yogurt bacterium Streptococcus thermophilus and the metabolic activities induced in the simulated human gut.

机构信息

Université de Lorraine, Unité de Recherche Animal et Fonctionnalités des Produits Animaux, Equipe Protéolyse et Biofonctionnalité des Protéines et des Peptides, Vandœuvre-lès-Nancy, F-54506, France; INRA, UR AFPA Unité Sous Contrat 340, Vandœuvre-lès-Nancy, F-54506, France; Clermont Université, Université d'Auvergne, Centre de Recherche en Nutrition Humaine Auvergne, EA 4678 CIDAM, 'Conception Ingénierie et Développement de l'Aliment et du Médicament', BP 10448, 63000, Clermont-Ferrand, France.

Université de Lorraine, Unité de Recherche Animal et Fonctionnalités des Produits Animaux, Equipe Protéolyse et Biofonctionnalité des Protéines et des Peptides, Vandœuvre-lès-Nancy, F-54506, France; INRA, UR AFPA Unité Sous Contrat 340, Vandœuvre-lès-Nancy, F-54506, France.

出版信息

Food Microbiol. 2016 Feb;53(Pt A):18-29. doi: 10.1016/j.fm.2015.05.007. Epub 2015 May 28.

Abstract

Streptococcus thermophilus, a lactic acid bacterium used to produce yogurts and cheeses is more and more considered for its potential probiotic properties. This implies that additional information should be obtained regarding its survival and metabolic activity in the human Gastro-Intestinal Tract (GIT). In this study, we screened 30 S. thermophilus strains for urease, small heat shock protein, and amino-acid decarboxylase functions which may play a role in survival in the upper part of the GIT. The survival kinetics of 4 strains was investigated using the TIM, a physiologically relevant in vitro dynamic gastric and small intestinal model. The three strains LMD9, PB18O and EBLST20 showed significantly higher survival than CNRZ21 in all digestive compartments of the TIM, which may be related to the presence of urease and heat shock protein functions. When LMD9 bacterial cells were delivered in a fermented milk formula, a significant improvement of survival in the TIM was observed compared to non-fermented milk. With the RIVET (Recombinase In Vivo Expression Technology) method applied to the LMD9 strain, a promoter located upstream of hisS, responsible for the histidyl-transfer RNA synthesis, was found to be specifically activated in the artificial stomach. The data generated on S. thermophilus survival and its adaptation capacities to the digestive tract are essential to establish a list of biomarkers useful for the selection of probiotic strains.

摘要

嗜热链球菌是一种用于生产酸奶和奶酪的乳酸杆菌,由于其具有潜在的益生菌特性,越来越受到关注。这意味着应该获得更多关于其在人体胃肠道(GIT)中的生存和代谢活性的信息。在这项研究中,我们筛选了 30 株嗜热链球菌,以确定其脲酶、小热休克蛋白和氨基酸脱羧酶功能,这些功能可能在胃肠道上部的生存中发挥作用。使用 TIM(一种生理相关的体外动态胃和小肠模型)研究了 4 株菌株的生存动力学。在 TIM 的所有消化部分中,LMD9、PB18O 和 EBLST20 这 3 株菌株的生存能力明显高于 CNRZ21,这可能与脲酶和热休克蛋白功能的存在有关。当 LMD9 细菌细胞被输送到发酵乳配方中时,与非发酵乳相比,在 TIM 中的生存能力显著提高。应用 RIVET(重组酶体内表达技术)方法对 LMD9 菌株进行研究,发现位于 hisS 上游的启动子,负责组氨酸转移 RNA 的合成,在人工胃中被特异性激活。嗜热链球菌的生存及其对肠道的适应能力的数据对于建立有用的益生菌菌株选择生物标志物列表至关重要。

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