Rifaximin Improves Visceral Hyperalgesia via TRPV1 by Modulating Intestinal Flora in the Water Avoidance Stressed Rat

Background. Rifaximin is effective in relieving pain symptoms with IBS patients, although the mechanisms were not clear. The aims of the research were to investigate whether the visceral hyperalgesia was alleviated by rifaximin via TRPV1 channel in rats. Methods. Rats were subjected to water avoidan...

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Main Authors: Chang-qing Yang, Xiao-shu Guo, Ji-Li, Zi-bai Wei, Li Zhao, Gan-ting Zhao, Shu-ting Sheng
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Gastroenterology Research and Practice
Online Access:http://dx.doi.org/10.1155/2020/4078681
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spelling doaj-149aabfd68ed4409b65be63a0ca5a8262020-11-25T02:55:12ZengHindawi LimitedGastroenterology Research and Practice1687-61211687-630X2020-01-01202010.1155/2020/40786814078681Rifaximin Improves Visceral Hyperalgesia via TRPV1 by Modulating Intestinal Flora in the Water Avoidance Stressed RatChang-qing Yang0Xiao-shu Guo1Ji-Li2Zi-bai Wei3Li Zhao4Gan-ting Zhao5Shu-ting Sheng6Department of Gastroenterology, Heping Hospital Affiliated to Changzhi Medical College, Changzhi, Shanxi Province, ChinaDepartment of Physiology, Changzhi Medical College, Changzhi, Shanxi Province, ChinaDepartment of Gastroenterology, Heping Hospital Affiliated to Changzhi Medical College, Changzhi, Shanxi Province, ChinaDepartment of Gastroenterology, Heping Hospital Affiliated to Changzhi Medical College, Changzhi, Shanxi Province, ChinaDepartment of Gastroenterology, Heping Hospital Affiliated to Changzhi Medical College, Changzhi, Shanxi Province, ChinaDepartment of Gastroenterology, Heping Hospital Affiliated to Changzhi Medical College, Changzhi, Shanxi Province, ChinaDepartment of Gastroenterology, Heping Hospital Affiliated to Changzhi Medical College, Changzhi, Shanxi Province, ChinaBackground. Rifaximin is effective in relieving pain symptoms with IBS patients, although the mechanisms were not clear. The aims of the research were to investigate whether the visceral hyperalgesia was alleviated by rifaximin via TRPV1 channel in rats. Methods. Rats were subjected to water avoidance stress (WAS) and were pretreated with rifaximin by oral gavage. The visceromotor response to colorectal distension was measured. The changes of TRPV1 in peripheral and central neurons of rats were detected by immunofluorescence, western blot method, and RT-PCR. Bacterial 16S ribosomal DNA in ileal contents was assessed using the Illumina MiSeq platform. The effect of intestinal flora on TRPV1 channel was observed by fecal microbiota transplantation (FMT) methods. Results. Rifaximin could relieve the visceral hyperalgesia and reduce the TRPV1 expression of neurons and ileum mucosa in rats induced by WAS. The reduced relative abundance of intestinal flora induced by WAS could be partly prevented by rifaximin. The electromyographical activities and immunoreactivity of TRPV1 in rats could be changed after FMT. Conclusions. Rifaximin could improve visceral hyperalgesia via TRPV1 channels of peripheral and central neurons by modulating intestinal flora in rats.http://dx.doi.org/10.1155/2020/4078681
collection DOAJ
language English
format Article
sources DOAJ
author Chang-qing Yang
Xiao-shu Guo
Ji-Li
Zi-bai Wei
Li Zhao
Gan-ting Zhao
Shu-ting Sheng
spellingShingle Chang-qing Yang
Xiao-shu Guo
Ji-Li
Zi-bai Wei
Li Zhao
Gan-ting Zhao
Shu-ting Sheng
Rifaximin Improves Visceral Hyperalgesia via TRPV1 by Modulating Intestinal Flora in the Water Avoidance Stressed Rat
Gastroenterology Research and Practice
author_facet Chang-qing Yang
Xiao-shu Guo
Ji-Li
Zi-bai Wei
Li Zhao
Gan-ting Zhao
Shu-ting Sheng
author_sort Chang-qing Yang
title Rifaximin Improves Visceral Hyperalgesia via TRPV1 by Modulating Intestinal Flora in the Water Avoidance Stressed Rat
title_short Rifaximin Improves Visceral Hyperalgesia via TRPV1 by Modulating Intestinal Flora in the Water Avoidance Stressed Rat
title_full Rifaximin Improves Visceral Hyperalgesia via TRPV1 by Modulating Intestinal Flora in the Water Avoidance Stressed Rat
title_fullStr Rifaximin Improves Visceral Hyperalgesia via TRPV1 by Modulating Intestinal Flora in the Water Avoidance Stressed Rat
title_full_unstemmed Rifaximin Improves Visceral Hyperalgesia via TRPV1 by Modulating Intestinal Flora in the Water Avoidance Stressed Rat
title_sort rifaximin improves visceral hyperalgesia via trpv1 by modulating intestinal flora in the water avoidance stressed rat
publisher Hindawi Limited
series Gastroenterology Research and Practice
issn 1687-6121
1687-630X
publishDate 2020-01-01
description Background. Rifaximin is effective in relieving pain symptoms with IBS patients, although the mechanisms were not clear. The aims of the research were to investigate whether the visceral hyperalgesia was alleviated by rifaximin via TRPV1 channel in rats. Methods. Rats were subjected to water avoidance stress (WAS) and were pretreated with rifaximin by oral gavage. The visceromotor response to colorectal distension was measured. The changes of TRPV1 in peripheral and central neurons of rats were detected by immunofluorescence, western blot method, and RT-PCR. Bacterial 16S ribosomal DNA in ileal contents was assessed using the Illumina MiSeq platform. The effect of intestinal flora on TRPV1 channel was observed by fecal microbiota transplantation (FMT) methods. Results. Rifaximin could relieve the visceral hyperalgesia and reduce the TRPV1 expression of neurons and ileum mucosa in rats induced by WAS. The reduced relative abundance of intestinal flora induced by WAS could be partly prevented by rifaximin. The electromyographical activities and immunoreactivity of TRPV1 in rats could be changed after FMT. Conclusions. Rifaximin could improve visceral hyperalgesia via TRPV1 channels of peripheral and central neurons by modulating intestinal flora in rats.
url http://dx.doi.org/10.1155/2020/4078681
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