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Qingchang Wenzhong Decoction Accelerates Intestinal Mucosal Healing Through Modulation of Dysregulated Gut Microbiome, Intestinal Barrier and Immune Responses in Mice

Inflammatory bowel disease (IBD), a group of multifactorial and inflammatory infirmities, is closely associated with dysregulation of gut microbiota and host metabolome, but effective treatments are currently limited. Qingchang Wenzhong Decoction (QCWZD) is an effective and classical traditional her...

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Autores principales: Sun, Zhongmei, Li, Junxiang, Wang, Wenting, Liu, Yuyue, Liu, Jia, Jiang, Hui, Lu, Qiongqiong, Ding, Panghua, Shi, Rui, Zhao, Xingjie, Yuan, Wenjing, Tan, Xiang, Shi, Xiaojun, Xing, Yunqi, Mao, Tangyou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8452913/
https://www.ncbi.nlm.nih.gov/pubmed/34557102
http://dx.doi.org/10.3389/fphar.2021.738152
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author Sun, Zhongmei
Li, Junxiang
Wang, Wenting
Liu, Yuyue
Liu, Jia
Jiang, Hui
Lu, Qiongqiong
Ding, Panghua
Shi, Rui
Zhao, Xingjie
Yuan, Wenjing
Tan, Xiang
Shi, Xiaojun
Xing, Yunqi
Mao, Tangyou
author_facet Sun, Zhongmei
Li, Junxiang
Wang, Wenting
Liu, Yuyue
Liu, Jia
Jiang, Hui
Lu, Qiongqiong
Ding, Panghua
Shi, Rui
Zhao, Xingjie
Yuan, Wenjing
Tan, Xiang
Shi, Xiaojun
Xing, Yunqi
Mao, Tangyou
author_sort Sun, Zhongmei
collection PubMed
description Inflammatory bowel disease (IBD), a group of multifactorial and inflammatory infirmities, is closely associated with dysregulation of gut microbiota and host metabolome, but effective treatments are currently limited. Qingchang Wenzhong Decoction (QCWZD) is an effective and classical traditional herbal prescription for the treatment of IBD and has been proved to attenuate intestinal inflammation in a model of acute colitis. However, the role of QCWZD in recovery phase of colitis is unclear. Here, we demonstrated that mice treated with QCWZD showed a faster recovery from dextran sulfate sodium (DSS)-induced epithelial injury, accompanied by reduced mucosal inflammation and attenuated intestinal dysbiosis using bacterial 16S rRNA amplicon sequencing compared to those receiving sterile water. The protective effects of QCWZD are gut microbiota dependent, as demonstrated by fecal microbiome transplantation and antibiotics treatment. Gut microbes transferred from QCWZD-treated mice displayed a similar role in mucosal protection and epithelial regeneration as QCWZD on colitis in mice, and depletion of the gut microbiota through antibiotics treatments diminished the beneficial effects of QCWZD on colitis mice. Moreover, metabolomic analysis revealed metabolic profiles alternations in response to the gut microbiota reprogrammed by QCWZD intervention, especially enhanced tryptophan metabolism, which may further accelerate intestinal stem cells-mediated epithelial regeneration to protect the integrity of intestinal mucosa through activation of Wnt/β-catenin signals. Collectively, our results suggested that orally administrated QCWZD accelerates intestinal mucosal healing through the modulation of dysregulated gut microbiota and metabolism, thus regulating intestinal stem cells-mediated epithelial proliferation, and hold promise for novel microbial-based therapies in the treatment of IBD.
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spelling pubmed-84529132021-09-22 Qingchang Wenzhong Decoction Accelerates Intestinal Mucosal Healing Through Modulation of Dysregulated Gut Microbiome, Intestinal Barrier and Immune Responses in Mice Sun, Zhongmei Li, Junxiang Wang, Wenting Liu, Yuyue Liu, Jia Jiang, Hui Lu, Qiongqiong Ding, Panghua Shi, Rui Zhao, Xingjie Yuan, Wenjing Tan, Xiang Shi, Xiaojun Xing, Yunqi Mao, Tangyou Front Pharmacol Pharmacology Inflammatory bowel disease (IBD), a group of multifactorial and inflammatory infirmities, is closely associated with dysregulation of gut microbiota and host metabolome, but effective treatments are currently limited. Qingchang Wenzhong Decoction (QCWZD) is an effective and classical traditional herbal prescription for the treatment of IBD and has been proved to attenuate intestinal inflammation in a model of acute colitis. However, the role of QCWZD in recovery phase of colitis is unclear. Here, we demonstrated that mice treated with QCWZD showed a faster recovery from dextran sulfate sodium (DSS)-induced epithelial injury, accompanied by reduced mucosal inflammation and attenuated intestinal dysbiosis using bacterial 16S rRNA amplicon sequencing compared to those receiving sterile water. The protective effects of QCWZD are gut microbiota dependent, as demonstrated by fecal microbiome transplantation and antibiotics treatment. Gut microbes transferred from QCWZD-treated mice displayed a similar role in mucosal protection and epithelial regeneration as QCWZD on colitis in mice, and depletion of the gut microbiota through antibiotics treatments diminished the beneficial effects of QCWZD on colitis mice. Moreover, metabolomic analysis revealed metabolic profiles alternations in response to the gut microbiota reprogrammed by QCWZD intervention, especially enhanced tryptophan metabolism, which may further accelerate intestinal stem cells-mediated epithelial regeneration to protect the integrity of intestinal mucosa through activation of Wnt/β-catenin signals. Collectively, our results suggested that orally administrated QCWZD accelerates intestinal mucosal healing through the modulation of dysregulated gut microbiota and metabolism, thus regulating intestinal stem cells-mediated epithelial proliferation, and hold promise for novel microbial-based therapies in the treatment of IBD. Frontiers Media S.A. 2021-09-07 /pmc/articles/PMC8452913/ /pubmed/34557102 http://dx.doi.org/10.3389/fphar.2021.738152 Text en Copyright © 2021 Sun, Li, Wang, Liu, Liu, Jiang, Lu, Ding, Shi, Zhao, Yuan, Tan, Shi, Xing and Mao. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Sun, Zhongmei
Li, Junxiang
Wang, Wenting
Liu, Yuyue
Liu, Jia
Jiang, Hui
Lu, Qiongqiong
Ding, Panghua
Shi, Rui
Zhao, Xingjie
Yuan, Wenjing
Tan, Xiang
Shi, Xiaojun
Xing, Yunqi
Mao, Tangyou
Qingchang Wenzhong Decoction Accelerates Intestinal Mucosal Healing Through Modulation of Dysregulated Gut Microbiome, Intestinal Barrier and Immune Responses in Mice
title Qingchang Wenzhong Decoction Accelerates Intestinal Mucosal Healing Through Modulation of Dysregulated Gut Microbiome, Intestinal Barrier and Immune Responses in Mice
title_full Qingchang Wenzhong Decoction Accelerates Intestinal Mucosal Healing Through Modulation of Dysregulated Gut Microbiome, Intestinal Barrier and Immune Responses in Mice
title_fullStr Qingchang Wenzhong Decoction Accelerates Intestinal Mucosal Healing Through Modulation of Dysregulated Gut Microbiome, Intestinal Barrier and Immune Responses in Mice
title_full_unstemmed Qingchang Wenzhong Decoction Accelerates Intestinal Mucosal Healing Through Modulation of Dysregulated Gut Microbiome, Intestinal Barrier and Immune Responses in Mice
title_short Qingchang Wenzhong Decoction Accelerates Intestinal Mucosal Healing Through Modulation of Dysregulated Gut Microbiome, Intestinal Barrier and Immune Responses in Mice
title_sort qingchang wenzhong decoction accelerates intestinal mucosal healing through modulation of dysregulated gut microbiome, intestinal barrier and immune responses in mice
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8452913/
https://www.ncbi.nlm.nih.gov/pubmed/34557102
http://dx.doi.org/10.3389/fphar.2021.738152
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