首页> 外文期刊>Journal of Translational Medicine >The gut microbiota is associated with the small intestinal paracellular permeability and the development of the immune system in healthy children during the first two years of life
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The gut microbiota is associated with the small intestinal paracellular permeability and the development of the immune system in healthy children during the first two years of life

机译:肠道微生物群与小肠间渗透性的小肠道细胞间渗透性以及在生命的前两年内健康儿童的免疫系统的发育有关

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The intestinal barrier plays an important role in the defense against infections, and nutritional, endocrine, and immune functions. The gut microbiota playing an important role in development of the gastrointestinal tract can impact intestinal permeability and immunity during early life, but data concerning this problem are scarce. We analyzed the microbiota in fecal samples (101 samples in total) collected longitudinally over 24?months from 21 newborns to investigate whether the markers of small intestinal paracellular permeability (zonulin) and immune system development (calprotectin) are linked to the gut microbiota. The results were validated using data from an independent cohort that included the calprotectin and gut microbiota in children during the first year of life. Zonulin levels tended to increase for up to 6?months after childbirth and stabilize thereafter remaining at a high level while calprotectin concentration was high after childbirth and began to decline from 6?months of life. The gut microbiota composition and the related metabolic potentials changed during the first 2?years of life and were correlated with zonulin and calprotectin levels. Faecal calprotectin correlated inversely with alpha diversity (Shannon index, r?=???0.30, FDR P (Q)?=?0.039). It also correlated with seven taxa; i.a. negatively with Ruminococcaceae (r?=???0.34, Q?=?0.046), and Clostridiales (r?=???0.34, Q?=?0.048) and positively with Staphylococcus (r?=?0.38, Q?=?0.023) and Staphylococcaceae (r?=?0.35, Q?=?0.04), whereas zonulin correlated with 19 taxa; i.a. with Bacillales (r?=???0.52, Q?=?0.0004), Clostridiales (r?=?0.48, Q?=?0.001) and the Ruminococcus (torques group) (r?=?0.40, Q?=?0.026). When time intervals were considered only changes in abundance of the Ruminococcus (torques group) were associated with changes in calprotectin (β?=?2.94, SE?=?0.8, Q?=?0.015). The dynamics of stool calprotectin was negatively associated with changes in two MetaCyc pathways: pyruvate fermentation to butanoate (β?=???4.54, SE?=?1.08, Q?=?0.028) and Clostridium acetobutylicum fermentation (β?=???4.48, SE?=?1.16, Q?=?0.026). The small intestinal paracellular permeability, immune system-related markers and gut microbiota change dynamically during the first 2?years of life. The Ruminococcus (torques group) seems to be especially involved in controlling paracellular permeability. Staphylococcus, Staphylococcaceae, Ruminococcaceae, and Clostridiales, may be potential biomarkers of the immune system. Despite observed correlations their clear causation and health consequences were not proven. Mechanistic studies are required.
机译:肠道屏障在防御感染和营养,内分泌和免疫功能中起着重要作用。在胃肠道发展中发挥着重要作用的肠道微生物会在早期生命期间会影响肠道渗透性和免疫力,但有关此问题的数据是稀缺的。我们分析了粪便样品中的微生物群(总共101个样品)纵向收集超过24个月,从21个新生儿进行调查,以研究小肠间渗透性(Zonulin)和免疫系统发育(CalProtectin)的标志物与肠道微生物液相关。结果使用来自独立群组的数据验证,该数据包括在生命的第一年的儿童中包含CalProtectin和Gut Microbiota。 Zonulin水平趋于增加了最多6?分娩后的月份,然后稳定在高水平的时候,而分娩后的CalProtectin浓度高,从6个月的生命中开始下降。肠道微生物群组成和相关的代谢潜力在前2年的生命期间发生变化,与Zonulin和CalProtectin水平相关。粪便酸突突显与α多样性相反(Shannon指数,R?= ??? 0.30,FDR P(Q)?=?0.039)。它也与七个分类群相关联; I.A.对喇叭钻菌(R?= ??? 0.34,q?= 0.046)和梭菌(r?= ??? 0.34,q?= 0.048),呈葡萄球菌(R?= 0.38,q?= ?0.023)和葡萄球菌(R?= 0.35,q?= 0.04),而Zonulin与19个分类群相关; I.A.用杆状杆菌(r?= ??? 0.52,q?= 0.0004),梭菌(r?= 0.48,q?= 0.001)和钻头球菌(r?=?0.40,q?=? 0.026)。当考虑时间间隔时,只考虑谣言(Torques组)的变化与CalProtectin的变化有关(β=?2.94,SE?=?0.8,Q?= 0.015)。粪便钙癌的动态与两种meticacc途径的变化负相关:丙烷酸盐的丙酮酸发酵(β?= ??? 4.54,se?=?1.08,q?0.028)和乙酰丁基脲发酵(β?= ?? ?4.48,se?=?1.16,q?= 0.026)。在前2年的生命期间,小肠肺细胞间渗透性,免疫系统相关标记和肠道微生物肠道变化。谣言似乎尤其参与控制静脉内渗透性。金葡萄球菌,葡萄球菌,喇叭杆菌和梭菌和梭菌,可能是免疫系统的潜在生物标志物。尽管观察到的相关性,但不证明它们明确的因果关系和健康后果。需要机械研究。

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