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体外发酵人粪便微生物群对葡萄籽黄烷-3-醇级分:微生物群和酚类代谢物的变化。

In vitro fermentation of grape seed flavan-3-ol fractions by human faecal microbiota: changes in microbial groups and phenolic metabolites.

机构信息

Instituto de Investigación en Ciencias de la Alimentación, CSIC-UAM, Madrid, Spain.

出版信息

FEMS Microbiol Ecol. 2013 Mar;83(3):792-805. doi: 10.1111/1574-6941.12037. Epub 2012 Nov 27.

Abstract

With the aim of investigating the potential of flavan-3-ols to influence the growth of intestinal bacterial groups, we have carried out the in vitro fermentation, with human faecal microbiota, of two purified fractions from grape seed extract (GSE): GSE-M (70% monomers and 28% procyanidins) and GSE-O (21% monomers and 78% procyanidins). Samples were collected at 0, 5, 10, 24, 30 and 48 h of fermentation for bacterial enumeration by fluorescent in situ hybridization and for analysis of phenolic metabolites. Both GSE-M and GSE-O fractions promoted growth of Lactobacillus/Enterococcus and decrease in the Clostridium histolyticum group during fermentation, although the effects were only statistically significant with GSE-M for Lactobacillus/Enterococcus (at 5 and 10 h of fermentation) and GSE-O for C. histolyticum (at 10 h of fermentation). Main changes in polyphenol catabolism also occurred during the first 10 h of fermentation; however, no significant correlation coefficients (P > 0.05) were found between changes in microbial populations and precursor flavan-3-ols or microbial metabolites. Together, these data suggest that the flavan-3-ol profile of a particular food source could affect the microbiota composition and its catabolic activity, inducing changes that could in turn affect the bioavailability and potential bioactivity of these compounds.

摘要

为了研究黄烷-3-醇对肠道细菌群体生长的潜在影响,我们用人粪便微生物群进行了葡萄种子提取物(GSE)的两个纯化部分的体外发酵:GSE-M(70%单体和 28%原花青素)和 GSE-O(21%单体和 78%原花青素)。在发酵 0、5、10、24、30 和 48 小时时收集样品,通过荧光原位杂交进行细菌计数,并分析酚类代谢物。GSE-M 和 GSE-O 两个部分都促进了乳酸杆菌/肠球菌的生长,并减少了发酵过程中的溶组织梭菌群,尽管 GSE-M 对乳酸杆菌/肠球菌(在发酵 5 和 10 小时时)和 GSE-O 对 C. histolyticum(在发酵 10 小时时)的影响仅具有统计学意义。多酚代谢物的主要变化也发生在发酵的前 10 小时内;然而,微生物种群变化与前体黄烷-3-醇或微生物代谢物之间没有发现显著的相关系数(P > 0.05)。总的来说,这些数据表明,特定食物来源的黄烷-3-醇谱可能会影响微生物群落的组成及其代谢活性,诱导可能反过来影响这些化合物的生物利用度和潜在生物活性的变化。

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