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应用动态胃肠道模拟器(simgi®)评估益生菌补充剂对葡萄多酚代谢的影响。

Application of the dynamic gastrointestinal simulator (simgi®) to assess the impact of probiotic supplementation in the metabolism of grape polyphenols.

机构信息

Institute of Food Science Research (CIAL), CSIC-UAM, C/ Nicolás Cabrera 9, 28049 Madrid, Spain.

Natac S A, Parque Científico de Madrid, C/ Faraday 7, 28049 Madrid, Spain.

出版信息

Food Res Int. 2020 Mar;129:108790. doi: 10.1016/j.foodres.2019.108790. Epub 2019 Nov 21.

Abstract

In this paper, the Dynamic Gastrointestinal Simulator (simgi®) is used as a model to the study the metabolic activity of probiotics at the intestinal level, and in particular, to assess the impact of probiotic supplementation in the microbial metabolism of grape polyphenols. Two independent simulations using fecal samples from two healthy volunteers were carried out. Changes in microbiota composition and in metabolic activity were assessed by qPCR and 16S rRNA gene sequencing and by analyses of phenolic metabolites and ammonium ions (NH). The strain Lactobacillus plantarum CLC 17 was successfully implanted in the colon compartments of the simgi® after daily feeding of 2 × 10 CFU/day for 7 days. Overall, no changes in bacterial diversity were observed after probiotic implantation. In comparison to the digestion of the grape polyphenols on their own, the inclusion of L. plantarum CLC 17 in the simgi® colon compartments led to a greater formation of phenolic metabolites such as benzoic acids, probably by the breakdown of high-molecular-weight procyanidin polymers. These results provide evidence that the probiotic strain Lactobacillus plantarum CLC 17 may improve the metabolism of dietary polyphenols when used as a food ingredient.

摘要

本文使用动态胃肠道模拟器(simgi®)作为模型,研究益生菌在肠道水平的代谢活性,特别是评估益生菌补充对葡萄多酚微生物代谢的影响。使用来自两名健康志愿者的粪便样本进行了两次独立的模拟。通过 qPCR 和 16S rRNA 基因测序以及酚类代谢物和铵离子(NH)分析评估微生物群落组成和代谢活性的变化。在每天喂食 2×10 CFU/天 7 天后,植物乳杆菌 CLC 17 菌株成功植入 simgi®的结肠隔室中。总体而言,益生菌植入后未观察到细菌多样性的变化。与葡萄多酚的单独消化相比,将植物乳杆菌 CLC 17 纳入 simgi®结肠隔室会导致更多的酚类代谢物形成,如苯甲酸,这可能是通过分解高分子量原花青素聚合物实现的。这些结果表明,当用作食品成分时,益生菌菌株植物乳杆菌 CLC 17 可能改善膳食多酚的代谢。

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