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Hippurate as a metabolomic marker of gut microbiome diversity: Modulation by diet and relationship to metabolic syndrome

机译:马来酸盐是肠道微生物组多样性的代谢组学标志物:饮食调节与代谢综合征的关系

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摘要

Reduced gut microbiome diversity is associated with multiple disorders including metabolic syndrome (MetS) features, though metabolomic markers have not been investigated. Our objective was to identify blood metabolite markers of gut microbiome diversity, and explore their relationship with dietary intake and MetS. We examined associations between Shannon diversity and 292 metabolites profiled by the untargeted metabolomics provider Metabolon Inc. in 1529 females from TwinsUK using linear regressions adjusting for confounders and multiple testing (Bonferroni: P < 1.71 × 10−4). We replicated the top results in an independent sample of 420 individuals as well as discordant identical twin pairs and explored associations with self-reported intakes of 20 food groups. Longitudinal changes in circulating levels of the top metabolite, were examined for their association with food intake at baseline and with MetS at endpoint. Five metabolites were associated with microbiome diversity and replicated in the independent sample. Higher intakes of fruit and whole grains were associated with higher levels of hippurate cross-sectionally and longitudinally. An increasing hippurate trend was associated with reduced odds of having MetS (OR: 0.795[0.082]; P = 0.026). These data add further weight to the key role of the microbiome as a potential mediator of the impact of dietary intake on metabolic status and health.
机译:肠道微生物组多样性降低与包括代谢综合征(MetS)特征在内的多种疾病有关,尽管尚未研究代谢组学标记。我们的目标是鉴定肠道微生物组多样性的血液代谢物标志物,并探讨其与饮食摄入和MetS的关系。我们使用线性回归调整了混杂因素并进行了多重检验,对TwinsUK的1529位女性中的Shannon多样性与无目标代谢组学提供商Metabolon Inc.所分析的292种代谢物之间的关联进行了线性校正,并进行了多元校正(Bonferroni:P <1.71×10 −4 ) 。我们在420名个体以及不一致的同卵双胞胎对的独立样本中复制了最佳结果,并探讨了与20种食物的自我报告摄入量之间的关联。检查了代谢产物循环水平的纵向变化,以确定其与基线食物摄入量和终点MetS的相关性。五个代谢物与微生物组多样性有关,并在独立样本中复制。水果和全谷类的摄入量较高,与横断面和纵向水平的马尿酸盐含量较高有关。马尿趋势增加与罹患MetS的几率降低相关(OR:0.795 [0.082]; P = 0.026)。这些数据进一步增加了微生物组作为膳食摄入对代谢状态和健康影响的潜在介质的关键作用的关键作用。

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