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肠道微生物群与膳食多酚的相互作用及其对人类健康的影响。

Interactions of gut microbiota with dietary polyphenols and consequences to human health.

作者信息

Tomás-Barberán Francisco A, Selma María V, Espín Juan C

机构信息

Research group on Quality, Safety, and Bioactivity of Plant Foods, CEBAS-CSIC, Murcia, Spain.

出版信息

Curr Opin Clin Nutr Metab Care. 2016 Nov;19(6):471-476. doi: 10.1097/MCO.0000000000000314.

Abstract

PURPOSE OF REVIEW

Dietary (poly)phenolic compounds have received attention over the last 20 years as antioxidants with preventive properties against chronic diseases. However, the evidence of these effects in clinical trials is weak, mainly because of a considerable interindividual variability. Polyphenols bioavailability is low, and gut microbiota metabolize them into simpler metabolites. As gut microbiota vary among individuals, such interindividual variability should be considered as a moderating factor in clinical trials. In this review, we show evidence of interactions with gut microbiota that help understanding polyphenols' health effects.

RECENT FINDINGS

Recent studies indicate that dietary polyphenols are relevant in the modulation of gut microbiota and that these microorganisms convert polyphenols into active and bioavailable metabolites; hence, variations in gut microbiota can affect polyphenol activity.

SUMMARY

The results show that study participants' stratification by their polyphenol-metabolizing phenotypes would be necessary for clinical trials as specific metabotypes produce the bioactive metabolites responsible for the health effects. Metabotypes can also reflect the gut microbiota composition and metabolic status, and could be biomarkers of the potential polyphenol health effects mediated through gut microbiota.

摘要

综述目的

在过去20年中,膳食(多)酚类化合物作为具有预防慢性病特性的抗氧化剂受到关注。然而,这些作用在临床试验中的证据不足,主要原因是个体间存在相当大的差异。多酚的生物利用度较低,肠道微生物群会将它们代谢为更简单的代谢产物。由于个体之间的肠道微生物群存在差异,这种个体间差异应被视为临床试验中的一个调节因素。在本综述中,我们展示了与肠道微生物群相互作用的证据,这有助于理解多酚对健康的影响。

最新发现

最近的研究表明,膳食多酚在调节肠道微生物群方面具有重要作用,并且这些微生物会将多酚转化为具有活性且可生物利用的代谢产物;因此,肠道微生物群的变化会影响多酚的活性。

总结

结果表明,在临床试验中,根据参与者的多酚代谢表型进行分层是必要的,因为特定的代谢型会产生对健康有影响的生物活性代谢产物。代谢型还可以反映肠道微生物群的组成和代谢状态,并且可能是通过肠道微生物群介导的多酚潜在健康影响的生物标志物。

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