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首页> 外文期刊>FEMS Microbiology Ecology >In vitro fermentation of grape seed flavan-3-ol fractions by human faecal microbiota: Changes in microbial groups and phenolic metabolites
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In vitro fermentation of grape seed flavan-3-ol fractions by human faecal microbiota: Changes in microbial groups and phenolic metabolites

机译:粪便微生物群对葡萄种子flavan-3-ol组分的体外发酵:微生物群和酚类代谢物的变化

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摘要

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.
机译:为了研究flavan-3-ols影响肠道细菌群体生长的潜力,我们利用人类粪便微生物对葡萄籽提取物(GSE)的两个纯化部分进行了体外发酵:GSE- M(70%单体和28%原花青素)和GSE-O(21%单体和78%原花青素)。在发酵的0、5、10、24、30和48 h收集样品,用于通过荧光原位杂交进行细菌计数和分析酚类代谢物。 GSE-M和GSE-O组分均在发酵过程中促进了乳杆菌/肠球菌的生长并在溶组织性梭状芽胞杆菌组中降低,尽管GSE-M对乳杆菌/肠球菌(在发酵5和10 h时)的影响仅具有统计学意义。溶组织梭状芽胞杆菌的GSE-O(发酵10小时)。发酵的前10小时也发生了多酚分解代谢的主要变化。然而,在微生物种群的变化与前体flavan-3-ols或微生物代谢产物之间没有发现显着的相关系数(P> 0.05)。总之,这些数据表明,特定食物来源的flavan-3-ol概况可能影响微生物群组成及其分解代谢活性,导致变化,进而可能影响这些化合物的生物利用度和潜在的生物活性。

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