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首页> 外文期刊>Nutrition Research >Changes in intestinal immunity, gut microbiota, and expression of energy metabolism-related genes explain adenoma growth in bilberry and cloudberry-fed Apc(Min) mice
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Changes in intestinal immunity, gut microbiota, and expression of energy metabolism-related genes explain adenoma growth in bilberry and cloudberry-fed Apc(Min) mice

机译:肠道免疫力,肠道菌群和能量代谢相关基因表达的变化解释了越橘和野果喂养的Apc(Min)小鼠腺瘤的生长

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摘要

We showed previously that ellagitannin-rich cloudberries and anthocyanin-rich bilberries reduce the number of intestinal adenomas in multiple intestinal neoplasia/+ (Apc(Min)) mice. We also found that cloudberries decreased the size of adenomas, whereas bilberries increased it. Here we hypothesized that the difference in adenoma growth could be explained by dissimilar effects of the berries on intestinal immune responses and gut microbiota, potentially driven by the distinct polyphenol compositions of the 2 berries. Our objectives were to investigate lymphocyte subtypes and the predominant cecal bacterial diversity in mice fed with bilberries and cloudberries, and to analyze global gene expression profiles in the intestinal mucosa. Immunostainings of CD3(+) T lymphocytes, FoxP3(+) regulatory T lymphocytes, and CD45R(+) B lymphocytes revealed a smaller ratio of intraepithelial to all mucosal CD3(+) T lymphocytes in the cloudberry-fed mice compared with controls, suggesting an attenuation of inflammation. Bilberry feeding induced no changes in the density of any of the lymphocyte subtypes. The predominant bacterial diversity in cecal contents, analyzed using polymerase chain reaction-denaturating gradient gel electrophoresis, was higher in the bilberry group than in the control or cloudberry groups. The microbial profiles of cloudberry-fed mice clustered together and were associated with small adenoma size. Pathway analyses of gene expression data showed that cloudberry down-regulated and bilberry up-regulated the expression of energy metabolism related genes in the intestinal mucosa. In conclusion, attenuation of intestinal inflammation, changes in microbial profiles, and down-regulation of mucosal energy metabolism may account for the smaller adenoma size in cloudberry-fed mice in comparison to bilberry-fed mice. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们以前显示,富含ellagitannin的野草莓和富含花青素的越桔可减少多发性肠新生/ +(Apc(Min))小鼠的肠腺瘤数量。我们还发现,野莓减小了腺瘤的大小,而越橘则增大了腺瘤的大小。在这里我们假设腺瘤生长的差异可以用浆果对肠道免疫反应和肠道菌群的不同影响来解释,这可能是由2种浆果不同的多酚成分驱动的。我们的目标是调查在喂食越桔和野草莓的小鼠中淋巴细胞亚型和主要盲肠细菌多样性,并分析肠道粘膜中的整体基因表达谱。 CD3(+)T淋巴细胞,FoxP3(+)调节性T淋巴细胞和CD45R(+)B淋巴细胞的免疫染色显示,与对照组相比,在野果喂养的小鼠中上皮内与所有粘膜CD3(+)T淋巴细胞的比例较小。减轻炎症。越橘喂养不会引起任何淋巴细胞亚型的密度变化。使用聚合酶链反应-变性梯度凝胶电泳分析,在盲肠中盲肠含量的主要细菌多样性高于对照组或野莓组。野果喂养小鼠的微生物特征聚集在一起,并与小的腺瘤大小有关。基因表达数据的通路分析表明,野莓下调了蓝莓的能量,而越桔上调了蓝莓中能量代谢相关基因的表达。总的来说,与越橘喂养的小鼠相比,野莓喂养的小鼠较小的腺瘤大小可以解释肠道炎症的减弱,微生物谱的变化以及黏膜能量代谢的下调。 (C)2016 Elsevier Inc.保留所有权利。

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