Li Qiqiong, Van de Wiele Tom
Center for Microbial Ecology and Technology, Faculty of Bioscience Engineering, Ghent University, Ghent, Belgium.
Crit Rev Food Sci Nutr. 2023;63(11):1500-1526. doi: 10.1080/10408398.2021.1965536. Epub 2021 Sep 13.
Tea polyphenols have been extensively studied for their preventive properties against cardiometabolic diseases. Nevertheless, the evidence of these effects from human intervention studies is not always consistent, mainly because of a large interindividual variability. The bioavailability of tea polyphenols is low, and metabolism of tea polyphenols highly depends on individual gut microbiota. The accompanying reciprocal relationship between tea polyphenols and gut microbiota may result in alterations in the cardiometabolic effects, however, the underlying mechanism of which is little explored. This review summarizes tea polyphenols-microbiota interaction and its contribution to interindividual variability in cardiometabolic effects. Currently, only a few bacteria that can biodegrade tea polyphenols have been identified and generated metabolites and their bioactivities in metabolic pathways are not fully elucidated. A deeper understanding of the role of complex interaction necessitates fully individualized data, the ntegration of multiple-omics platforms and development of polyphenol-centered databases. Knowledge of this microbial contribution will enable the functional stratification of individuals in the gut microbiota profile (metabotypes) to clarify interindividual variability in the health effects of tea polyphenols. This could be used to predict individual responses to tea polyphenols consumption, hence bringing us closer to personalized nutrition with optimal dose and additional supplementation of specific microorganisms.
茶多酚因其对心脏代谢疾病的预防特性而受到广泛研究。然而,人体干预研究中这些作用的证据并不总是一致的,主要是因为个体间存在很大差异。茶多酚的生物利用度较低,其代谢高度依赖于个体的肠道微生物群。茶多酚与肠道微生物群之间的相互关系可能导致心脏代谢效应的改变,然而,其潜在机制鲜有探索。本综述总结了茶多酚与微生物群的相互作用及其对心脏代谢效应个体间差异的影响。目前,仅鉴定出少数几种可降解茶多酚的细菌,其代谢途径中产生的代谢产物及其生物活性尚未完全阐明。深入了解这种复杂相互作用的作用需要完全个性化的数据、多组学平台的整合以及以多酚为中心的数据库的开发。了解这种微生物的作用将有助于根据肠道微生物群谱(代谢型)对个体进行功能分层,以阐明茶多酚健康效应的个体间差异。这可用于预测个体对茶多酚摄入的反应,从而使我们更接近具有最佳剂量和特定微生物额外补充的个性化营养。