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首页> 外文期刊>American Journal of Physiology >Lactobacillus reuteri DSM 17938 feeding of healthy newborn mice regulates immune responses while modulating gut microbiota and boosting beneficial metabolites
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Lactobacillus reuteri DSM 17938 feeding of healthy newborn mice regulates immune responses while modulating gut microbiota and boosting beneficial metabolites

机译:乳酸杆菌Reuteri DSM 17938健康新生儿的喂养调节免疫应答,同时调节肠道微生物群并提高有益的代谢物

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Early administration of Lactobacillus reuteri DSM 17938 (LR) prevents necrotizing entero-colitis and inhibits regulatory T-cell (Treg)-deficiency-associated au-toimmunity in mice. In humans, LR reduces crying time in breastfed infants with colic, modifies severity in infants with acute diarrheal illnesses, and improves pain in children with functional bowel disorders. In healthy breastfed newborns with evolving microbial colonization, it is unclear if early administration of LR can modulate gut microbiota and their metabolites in such a way as to promote honieo-stasis. We gavaged LR (107 colony-forming units/day, daily) to C57BL/6J mice at age of day 8 for 2 wk. Both male and female mice were investigated in these experiments. We found that feeding LR did not affect clinical phenotype or inflammatory biomarkers in plasma and stool, but LR increased the proportion of Foxp3+ regulatory T cells (Tregs) in the intestine. LR also increased bacterial diversity and the relative abundance of p_Fumicutes, f_Lachnospiraceae, f_Rumi-nococcaceae, and genera Clostridium and Candidatus arlhromitus, while decreasing the relative abundance of p_Bacteriodetes, f_Bacte-roidaceae, f_Verrucomicrobiaceae, and genera Bacteroides, Rumino-coccus, Akkermansia, and Sutterella. Finally, LR exerted a major impact on the plasma metabolome, upregulating amino acid metabolites formed via the urea, tricarboxylic acid, and methionine cycles and increasing tryptophan metabolism. In conclusion, early oral administration of LR to healthy breastfed mice led to microbial and metabolic changes which could be beneficial to general health. NEW & NOTEWORTHY Oral administration of Lactobacillus reuteri DSM 17938 (LR) to healthy breastfed mice promotes intestinal immune tolerance and is linked to proliferation of beneficial gut microbiota. LR upregulates plasma metabolites that are involved in the urea cycle, the TCA cycle, methionine methylation, and the polyamine pathway. Herein, we show that LR given to newborn mice specifically increases levels of tryptophan metabolites and the purine nucleoside adenosine that are known to enhance tolerance to inflammatory stimuli.
机译:早期施用Lactobacillus Reuteri DSM 17938(LR)可​​防止坏死性肠 - 结肠炎,并抑制小鼠中的调节性T细胞(Treg)相关的Au-ToImmunity。在人类中,LR减少母乳喂养婴儿用梭菌的哭泣时间,修饰患有急性腹泻疾病的婴儿的严重程度,并改善功能性肠疾病的儿童疼痛。在具有不断变化的微生物殖民化的健康母乳喂养的新生儿中,如果LR的早期施用可以调节肠道微生物和它们的代谢物以促进Honieo-stasis的方式,则尚不清楚。我们在第8天的第2岁时掌握了LR(107个形成单位/日,每日)至C57BL / 6J小鼠2周。在这些实验中研究了雄性和雌性小鼠。我们发现喂养LR不影响血浆和粪便中的临床表型或炎症生物标志物,但LR增加了肠中Foxp3 +调节T细胞(Tregs)的比例。 LR还增加了细菌多样性和P_Fumicutes,F_Lachnospiraceae,F_Rumi-Nococcaceae和Winera Closstidium和Candidatus Arlhromitus的相对丰度,同时降低了P_bacteriodetes,F_Bacte-Roidaceae,F_verrucoMicrobiaceae和Genera Bacteroges,Rumino-Coccus,Akkermansia的相对丰度,以及Suttutterla。最后,LR施加对血浆代谢物的重大影响,通过尿素,三羧酸和蛋氨酸循环形成的上调氨基酸代谢物,增加色氨酸代谢。总之,早期口服给予健康母乳喂养小鼠的口服给予微生物和代谢变化,这可能对一般健康有益。新的和值得注意的口服乳酸乳杆菌乳房17938(LR)对健康的母乳喂养小鼠促进肠道免疫耐受性,并与有益肠道微生物的增殖联系在一起。 LR上调涉及尿素循环,TCA循环,甲硫氨酸甲基化和多胺途径的血浆代谢物。在此,我们表明,给予新生儿小鼠的LR特异性增加了众所周知的色氨酸代谢物和嘌呤核苷腺苷的水平,以增强对炎症刺激的耐受性。

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