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Metabolite Profiling of the Gut Microbiome in Mice with Dietary Administration of Black Raspberries

机译:黑覆盆子膳食给药肠道小鼠肠道微生物组的代谢物分析

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Mounting evidence has linked gut microbiome to health benefits of various functional foods. We previously reported that administration of a diet rich in black raspberry (BRB) changed the composition and diverse functional pathways in the mouse gut microbiome. To further characterize the functional profile in the gut microbiome of mice on BRB diet, in this follow-up study, we examined the metabolome differences in the gut microbiome driven by BRB consumption via targeted and untargeted metabolomic approaches. A distinct metabolite profile was observed in the gut microbiome of the mice on BRB diet, likely resulting from a combination of microbiome functional changes and unique precursors in BRBs. A number of functional metabolites, such as tetrahydrobiopterin and butyrate that were significantly increased in the gut microbiome may be linked to the beneficial health effects of BRB consumption. These findings suggest the important role of the gut microbiome in the health effects of BRBs and provide a connection among the health benefits of functional foods and the gut microbiome.
机译:安装证据与各种功能性食品的健康益处有联系着肠道微生物组。我们之前报道,富含黑覆盆子(BRB)的饮食施用改变了小鼠肠道微生物组中的组成和多样的功能途径。为了进一步表征BRB饮食对小鼠的肠道微生物组中的功能性剖面,在这种后续研究中,我们研究了通过靶向和未确定的代谢物方法在BRB消耗驱动的肠道微生物组中的代谢物差异。在BRB饮食上的小鼠的肠道微生物组中观察到不同的代谢物曲线,可能是由微生物组功能变化和BRB中独特的前体的组合引起的。在肠道微生物组中显着增加的许多功能性代谢物,例如在肠道微生物组中显着增加的叔丁酸酯可以与BRB消耗的有益健康影响有关。这些发现表明肠道微生物组在BRB的健康效果中的重要作用,并提供功能性食品和肠道微生物组的健康益处之间的联系。

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