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植物乳杆菌 IFPL935 可促进结肠微生物群对红酒多酚的初始代谢。

Lactobacillus plantarum IFPL935 favors the initial metabolism of red wine polyphenols when added to a colonic microbiota.

机构信息

Department of Biotechnology and Microbiology, Instituto de Investigación en Ciencias de la Alimentación, CIAL (CSIC-UAM) , Nicolás Cabrera 9, 28049 Madrid, Spain.

出版信息

J Agric Food Chem. 2013 Oct 23;61(42):10163-72. doi: 10.1021/jf402816r. Epub 2013 Oct 14.

Abstract

This work aimed to unravel the role of Lactobacillus plantarum IFPL935 strain in the colonic metabolism of a polyphenolic red wine extract, when added to a complex human colonic microbiota from the dynamic simulator of the human intestinal microbial ecosystem (SHIME). The concentration of microbial-derived phenolic metabolites and microbial community changes along with fermentative and proteolytic activities were monitored. The results showed that L. plantarum IFPL935 significantly increased the concentration of the initial microbial ring-fission catabolite of catechins and procyanidins, diphenylpropanol, and, similarly, 4-hydroxy-5-(3'-hydroxyphenyl)valeric acid production. Overall, the addition of L. plantarum IFPL935 did not have an impact on the total concentration of phenolic metabolites, except for batches inoculated with colonic microbiota from the effluent compartment (EC), where the figures were significantly higher when L. plantarum IFPL935 was added (24 h). In summary, the data highlighted that L. plantarum IFPL935 may have an impact on the bioavailability of these dietary polyphenols. Some of the microbial-derived metabolites may play a key role in the protective effects that have been linked to a polyphenol-rich diet.

摘要

本研究旨在探究植物乳杆菌 IFPL935 菌株在多酚红酒提取物的结肠代谢中的作用,当该菌株被添加到来自人类肠道微生物生态系统动态模拟器(SHIME)的复杂人类结肠微生物群中时。监测了微生物衍生酚类代谢物的浓度变化和微生物群落的变化以及发酵和蛋白水解活性。结果表明,植物乳杆菌 IFPL935 显著增加了儿茶素和原花青素、二苯丙烷和 4-羟基-5-(3'-羟基苯基)戊酸初始微生物环分裂代谢产物的浓度。总体而言,除了接种来自流出物隔室(EC)的结肠微生物群的批次外,添加植物乳杆菌 IFPL935 对酚类代谢物的总浓度没有影响,在添加植物乳杆菌 IFPL935 时,这些数值在 24 小时时显著更高。总之,数据强调了植物乳杆菌 IFPL935 可能对这些饮食多酚的生物利用度有影响。一些微生物衍生的代谢物可能在与富含多酚的饮食相关的保护作用中发挥关键作用。

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