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黏附诱导的盲肠微生物群变化缓解了小鼠便秘。

Adhesive Induced Changes in Cecal Microbiome Alleviated Constipation in Mice.

作者信息

Wang Linlin, Chen Cailing, Cui Shumao, Lee Yuan-Kun, Wang Gang, Zhao Jianxin, Zhang Hao, Chen Wei

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, China.

School of Food Science and Technology, Jiangnan University, Wuxi, China.

出版信息

Front Microbiol. 2019 Aug 13;10:1721. doi: 10.3389/fmicb.2019.01721. eCollection 2019.

Abstract

Constipation, which seriously affects living quality of people, is a common gastrointestinal disease. The engagement of the intestinal flora in the development of symptoms of constipation has been frequently hypothesized. In this study, constipated mice induced by loperamide were used to investige the alleviation of constipation by Bifidobacteria. Bifidobacteria was sorted out according to their adhesive properties into two groups. One group combined multiple strains of with adhesion property (CMB1), the other combined multiple strains of without adhesion property (CMB2). It was found that CMB1 can alleviate constipation more efficiently by improving the water, propionate and butyrate content in feces, and overall gastrointestinal transit time. Meanwhile, from the perspective of fecal microbiota, CMB1 alleviated constipation mainly by increasing the relative abundances of genera (, , and ) associated with rapid bowel movement. From the perspective of cecal microbiota, CMB1 alleviated constipation mainly by increasing the relative abundances of genera , , unclassified S24-7, , , , and , and decreasing the relative abundances of genera , and Unclassified F16, which are associated with methane production and colonic transit. Overall, changes of microbiota in caecum by CMB1 reflect the stage of constipation in mice more comprehensively than that in feces.

摘要

便秘是一种常见的胃肠道疾病,严重影响人们的生活质量。肠道菌群参与便秘症状发展的观点屡被提出。在本研究中,使用洛哌丁胺诱导的便秘小鼠来研究双歧杆菌对便秘的缓解作用。双歧杆菌根据其黏附特性分为两组。一组为多种具有黏附特性的菌株组合(CMB1),另一组为多种不具有黏附特性的菌株组合(CMB2)。研究发现,CMB1可通过提高粪便中的水分、丙酸和丁酸含量以及整体胃肠道转运时间来更有效地缓解便秘。同时,从粪便微生物群的角度来看,CMB1缓解便秘主要是通过增加与快速排便相关的属(、和)的相对丰度。从盲肠微生物群的角度来看,CMB1缓解便秘主要是通过增加属、、未分类的S24 - 7、、、和的相对丰度,并降低与甲烷产生和结肠转运相关的属、和未分类的F16的相对丰度。总体而言,CMB1引起的盲肠微生物群变化比粪便微生物群变化更全面地反映了小鼠便秘的阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f91b/6700325/b385368a0636/fmicb-10-01721-g001.jpg

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