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Dietary AhR Ligands Regulate AhRR Expression in Intestinal Immune Cells and Intestinal Microbiota Composition

机译:膳食AHR配体调节肠免疫细胞和肠道微生物组成中的AHRR表达

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摘要

A diet rich in vegetables and fruit is generally considered healthy because of a high content of phytochemicals, vitamins, and fiber. The phytochemical indole-3-carbinol (I3C), a derivative of glucobrassicin, is sold as a dietary supplement promising diverse health benefits. I3C metabolites act as ligands of the aryl hydrocarbon receptor (AhR), an important sensor for environmental polyaromatic chemicals. Here, we investigated how dietary AhR ligand supplementation influences AhR target gene expression and intestinal microbiota composition. For this, we used AhR repressor (AhRR)-reporter mice as a tool to study AhR activation in the intestine following dietary I3C-supplementation in comparison with AhR ligand-deprived diets, including a high fat diet. AhRR expression in intestinal immune cells was mainly driven by dietary AhR ligands and was independent of microbial metabolites. A lack of dietary AhR ligands caused enhanced susceptibility to dextran sodium sulfate (DSS)-induced colitis and correlated with the expansion of Enterobacteriaceae, whereas Clostridiales, Muribaculaceae, and Rikenellaceae were strongly reduced. I3C supplementation largely reverted this effect. Comparison of I3C-induced changes in microbiota composition using wild-type (WT), AhRR-deficient, and AhR-deficient mice revealed both AhR-dependent and -independent alterations in the microbiome. Overall, our study demonstrates that dietary AhR ligand supplementation has a profound influence on Ahrr expression in intestinal immune cells as well as microbiota composition.
机译:丰富的蔬菜和水果的饮食通常被认为是由于植物化学物质,维生素和纤维含量高的健康。植物化学物质吲哚-3-甲醇(I3C),glucobrassicin的衍生物,出售作为膳食补充剂看好多样的健康益处。 I3C代谢物作为芳香烃受体(AHR),用于环境的聚芳族化学品的重要传感器的配体。这里,我们调查膳食的AhR的配体补充如何影响的AhR的靶基因表达和肠道微生物组合物。对于这一点,我们使用芳香烃受体阻遏(AHRR)-reporter小鼠作为一种工具来研究芳香烃受体活化肠道中的食物之后I3C补充剂与芳香烃受体配体相比,剥夺饮食,包括高脂肪的饮食。在肠道免疫细胞AHRR表达主要由膳食的AhR的配体驱动的并且是独立的微生物代谢物的。缺乏饮食的AhR的配体引起增强的易感性葡聚糖硫酸钠(DSS)诱发的结肠炎和与肠杆菌科的膨胀有关,而梭菌,Muribaculaceae和Rikenellaceae被强烈减少。 I3C补充很大程度上恢复了这种效果。使用野生型(WT)中的微生物群组成的比较I3C引起的变化,AHRR缺陷型,和AHR缺陷型小鼠显示两者的AhR依赖性和非依赖性改变在微生物。总的来说,我们的研究表明,饮食中芳香烃受体配体补充对AHRR表达的肠道免疫细胞以及微生物组成的深远的影响。

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