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大鼠尿液代谢谱与可可对肠道影响之间的关联。

Association between urinary metabolic profile and the intestinal effects of cocoa in rats.

作者信息

Massot-Cladera Malen, Mayneris-Perxachs Jordi, Costabile Adele, Swann Jonathan R, Franch Àngels, Pérez-Cano Francisco J, Castell Margarida

机构信息

1Department of Biochemistry and Physiology, Faculty of Pharmacy and Food Sciences,University of Barcelona,Av. Joan XXIII, 27-31, Building B, 3rd Floor,Barcelona08028,Spain.

3Division of Computational and Systems Medicine,Imperial College London,London SW7 2AZ,UK.

出版信息

Br J Nutr. 2017 Mar;117(5):623-634. doi: 10.1017/S0007114517000496. Epub 2017 Mar 27.

Abstract

The aim of this study was to elucidate the relationship between the urinary metabolic fingerprint and the effects of cocoa and cocoa fibre on body weight, hormone metabolism, intestinal immunity and microbiota composition. To this effect, Wistar rats were fed, for 3 weeks, a diet containing 10 % cocoa (C10) or two other diets with same the proportion of fibres: one based on cocoa fibre (CF) and another containing inulin as a reference (REF) diet. The rats' 24 h urine samples were analysed by an untargeted 1H NMR spectroscopy-based metabonomic approach. Concentrations of faecal IgA and plasma metabolic hormones were also quantified. The C10 diet decreased the intestinal IgA, plasma glucagon-like peptide-1 and glucagon concentrations and increased ghrelin levels compared with those in the REF group. Clear differences were observed between the metabolic profiles from the C10 group and those from the CF group. Urine metabolites derived from cocoa correlated with the cocoa effects on body weight, immunity and the gut microbiota. Overall, cocoa intake alters the host and bacterial metabolism concerning energy and amino acid pathways, leading to a metabolic signature that can be used as a marker for consumption. This metabolic profile correlates with body weight, metabolic hormones, intestinal immunity and microbiota composition.

摘要

本研究的目的是阐明尿代谢指纹图谱与可可及可可纤维对体重、激素代谢、肠道免疫和微生物群组成的影响之间的关系。为此,将Wistar大鼠喂食含10%可可的饮食(C10)3周,或另外两种含有相同比例纤维的饮食:一种基于可可纤维(CF),另一种含有菊粉作为对照(REF)饮食。通过基于非靶向1H NMR光谱的代谢组学方法分析大鼠的24小时尿液样本。还对粪便IgA和血浆代谢激素的浓度进行了定量。与REF组相比,C10饮食降低了肠道IgA、血浆胰高血糖素样肽-1和胰高血糖素浓度,并提高了胃饥饿素水平。在C10组和CF组的代谢谱之间观察到明显差异。源自可可的尿液代谢物与可可对体重、免疫和肠道微生物群的影响相关。总体而言,摄入可可会改变宿主和细菌在能量和氨基酸途径方面的代谢,产生一种可作为消费标志物的代谢特征。这种代谢谱与体重、代谢激素、肠道免疫和微生物群组成相关。

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