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Consumption of Acidic Water Alters the Gut Microbiome and Decreases the Risk of Diabetes in NOD Mice

机译:消耗酸性水会改变肠道微生物组并降低NOD小鼠中糖尿病的风险

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摘要

Infant formula and breastfeeding are environmental factors that influence the incidence of Type 1 Diabetes (T1D) as well as the acidity of newborn diets. To determine if altering the intestinal microbiome is one mechanism through which an acidic liquid plays a role in T1D, we placed non-obese diabetic (NOD)/ShiLtJt mice on neutral (N) or acidified H2O and monitored the impact on microbial composition and diabetes incidence. NOD-N mice showed an increased development of diabetes, while exhibiting a decrease in Firmicutes and an increase in Bacteroidetes, Actinobacteria, and Proteobacteria from as early as 2 weeks of age. NOD-N mice had a decrease in the levels of Foxp3 expression in CD4+Foxp3+ cells, as well as decreased CD4+IL17+ cells, and a lower ratio of IL17/IFNγ CD4+ T-cells. Our data clearly indicates that a change in the acidity of liquids consumed dramatically alters the intestinal microbiome, the presence of protective Th17 and Treg cells, and the incidence of diabetes. This data suggests that early dietary manipulation of intestinal microbiota may be a novel mechanism to delay T1D onset in genetically pre-disposed individuals.
机译:婴儿配方奶粉和母乳喂养是影响1型糖尿病(T1D)发病率以及新生儿饮食酸度的环境因素。为了确定改变肠道微生物组是否是酸性液体在T1D中起作用的一种机制,我们将非肥胖糖尿病(NOD)/ ShiLtJt小鼠置于中性(N)或酸化H2O上,并监测对微生物组成和糖尿病的影响发生率。从2周龄开始,NOD-N小鼠的糖尿病发展加快,而Firmicutes减少,拟杆菌,放线菌和Proteobacteria增多。 NOD-N小鼠的CD4 + Foxp3 + 细胞中Foxp3表达水平降低,而CD4 + IL17 + 细胞,IL17 /IFNγCD4 + T细胞比例降低。我们的数据清楚地表明,所消耗液体的酸度变化极大地改变了肠道微生物组,保护性Th17和Treg细胞的存在以及糖尿病的发病率。该数据表明,肠道微生物群的早期饮食控制可能是在遗传易感人群中延迟T1D发作的新机制。

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