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Ability of the gut microbiota to produce PUFA-derived bacterial metabolites: proof of concept in germ-free versus conventionalized mice

机译:肠道微生物群产生多不饱和脂肪酸衍生细菌代谢物的能力:无菌与常规小鼠的概念证明

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摘要

Scope—The gut microbiota is able to modulate host physiology through the production of bioactive metabolites. Our recent studies suggest that changes in gut microbiota composition upon prebiotics supplementation alter tissue levels of PUFA-derived metabolites in mice. However, in vivo evidence that gut microbes produces PUFA-derived metabolites is lacking. This study aimed to decipher the contribution of gut microbes versus that of the host in PUFA-derived metabolite production.Methods and results—To achieve this goal, we compared the proportion of PUFA-derived metabolites and the expression of fatty acid desaturases in germ-free (GF) and conventionalized (CONV) mice fed either a low fat or Western diet. Higher concentrations of PUFA-derived metabolites were found in the colonic contents of CONV mice compared to GF mice. The abundance of these metabolites in host tissues was modulated by dietary treatments but not by microbial status. Although microbial status did significantly influence desaturase expression, no correlations between host enzymes and tissue PUFA-derived metabolite levels were observed.Conclusion—Together, these results highlight the ability of the gut microbiota to produce PUFA-derived metabolites from dietary PUFA. However, microbial production of these
机译:范围-肠道菌群能够通过生物活性代谢产物的产生来调节宿主的生理。我们最近的研究表明,益生元补充后肠道微生物群组成的变化会改变小鼠PUFA衍生代谢产物的组织水平。但是,缺乏肠道微生物产生PUFA衍生代谢产物的体内证据。这项研究旨在破译肠道微生物对宿主在PUFA衍生代谢产物生产中的贡献。免费(GF)和常规(CONV)小鼠喂低脂或西方饮食。与GF小鼠相比,CONV小鼠的结肠内容物中发现了更高浓度的PUFA衍生代谢产物。这些代谢产物在宿主组织中的丰度是通过饮食疗法调节的,而不是通过微生物状态调节的。尽管微生物状态确实会严重影响去饱和酶的表达,但未观察到宿主酶与组织中PUFA衍生的代谢产物水平之间的相关性。但是,这些微生物的产生

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