Cargando…

Paeoniflorin alleviates inflammatory response in IBS-D mouse model via downregulation of the NLRP3 inflammasome pathway with involvement of miR-29a

Paeoniflorin has been traditionally used to treat pain and immunologic derangement in China. However, its detailed mechanism remains to be illuminated. We investigated the mechanism by which paeoniflorin alleviates the inflammatory response in a mouse model of irritable bowel syndrome with predomina...

Descripción completa

Detalles Bibliográficos
Autores principales: Ke, Wei, Wang, Yongfu, Huang, Siyu, Liu, Shan, Zhu, He, Xie, Xiangyu, Yang, Huifei, Lu, Qin, Gan, Jianfeng, He, Guodong, Che, Fei, Wan, Xin, Tang, Hongmei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800317/
https://www.ncbi.nlm.nih.gov/pubmed/36590561
http://dx.doi.org/10.1016/j.heliyon.2022.e12312
_version_ 1784861270270279680
author Ke, Wei
Wang, Yongfu
Huang, Siyu
Liu, Shan
Zhu, He
Xie, Xiangyu
Yang, Huifei
Lu, Qin
Gan, Jianfeng
He, Guodong
Che, Fei
Wan, Xin
Tang, Hongmei
author_facet Ke, Wei
Wang, Yongfu
Huang, Siyu
Liu, Shan
Zhu, He
Xie, Xiangyu
Yang, Huifei
Lu, Qin
Gan, Jianfeng
He, Guodong
Che, Fei
Wan, Xin
Tang, Hongmei
author_sort Ke, Wei
collection PubMed
description Paeoniflorin has been traditionally used to treat pain and immunologic derangement in China. However, its detailed mechanism remains to be illuminated. We investigated the mechanism by which paeoniflorin alleviates the inflammatory response in a mouse model of irritable bowel syndrome with predominant diarrhea (IBS-D). C57BL/6 wild type (WT) and miR-29a knockout (KO) mice were randomly divided into control, model, rifaximin, and paeoniflorin groups (n = 7). IBS-D model was induced by single intracolonic instillation of 0.1 mL trinitro-benzene-sulfonic acid (TNBS, 50 mg/mL) combined with restraint stress for seven consecutive days. The treatment groups received rifaximin (100 mg/kg) and paeoniflorin (50 mg/kg) via intragastric administration for seven days, respectively. The results showed that the fecal water content, fecal pellet output, visceral sensitivity, and histopathological score after paeoniflorin treatment were lower than those of the model group in both WT and miR-29a KO mice (P < 0.05). In both lineage mice, damage was observed in the colon tissues of model group, while paeoniflorin treatment partially ameliorated the tissue damage. Serum levels of DAO, DLA, IL-1β, IL-18, TNF-α, and MPO were decreased after paeoniflorin treatment (P < 0.05), with miR-29a KO mice in a lower level compared with that of WT mice. RT-PCR showed that the relative expression of miR-29a, NF-κB (p65), NLRP3, ASC, caspase-1, IL-1β, and TNF-α was downregulated while NKRF was upregulated after paeoniflorin treatment (P < 0.05). Immunohistochemistry showed that intestinal epithelial protein levels of NLRP3, ASC, and caspase-1 decreased while those of Claudin-1 and ZO-1 increased in the paeoniflorin treatment group (P < 0.05). In general, compared with WT mice, NLRP3 inflammasome pathway targets was in much lower expression level than miR-29a KO mice. In conclusion, paeoniflorin could inhibit abnormal activation of the NLRP3 inflammasome pathway by inhibiting miR-29a in IBS-D, thereby relieving the inflammatory response of the intestinal mucosa and reconstructing the intestinal epithelial barrier.
format Online
Article
Text
id pubmed-9800317
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-98003172022-12-31 Paeoniflorin alleviates inflammatory response in IBS-D mouse model via downregulation of the NLRP3 inflammasome pathway with involvement of miR-29a Ke, Wei Wang, Yongfu Huang, Siyu Liu, Shan Zhu, He Xie, Xiangyu Yang, Huifei Lu, Qin Gan, Jianfeng He, Guodong Che, Fei Wan, Xin Tang, Hongmei Heliyon Research Article Paeoniflorin has been traditionally used to treat pain and immunologic derangement in China. However, its detailed mechanism remains to be illuminated. We investigated the mechanism by which paeoniflorin alleviates the inflammatory response in a mouse model of irritable bowel syndrome with predominant diarrhea (IBS-D). C57BL/6 wild type (WT) and miR-29a knockout (KO) mice were randomly divided into control, model, rifaximin, and paeoniflorin groups (n = 7). IBS-D model was induced by single intracolonic instillation of 0.1 mL trinitro-benzene-sulfonic acid (TNBS, 50 mg/mL) combined with restraint stress for seven consecutive days. The treatment groups received rifaximin (100 mg/kg) and paeoniflorin (50 mg/kg) via intragastric administration for seven days, respectively. The results showed that the fecal water content, fecal pellet output, visceral sensitivity, and histopathological score after paeoniflorin treatment were lower than those of the model group in both WT and miR-29a KO mice (P < 0.05). In both lineage mice, damage was observed in the colon tissues of model group, while paeoniflorin treatment partially ameliorated the tissue damage. Serum levels of DAO, DLA, IL-1β, IL-18, TNF-α, and MPO were decreased after paeoniflorin treatment (P < 0.05), with miR-29a KO mice in a lower level compared with that of WT mice. RT-PCR showed that the relative expression of miR-29a, NF-κB (p65), NLRP3, ASC, caspase-1, IL-1β, and TNF-α was downregulated while NKRF was upregulated after paeoniflorin treatment (P < 0.05). Immunohistochemistry showed that intestinal epithelial protein levels of NLRP3, ASC, and caspase-1 decreased while those of Claudin-1 and ZO-1 increased in the paeoniflorin treatment group (P < 0.05). In general, compared with WT mice, NLRP3 inflammasome pathway targets was in much lower expression level than miR-29a KO mice. In conclusion, paeoniflorin could inhibit abnormal activation of the NLRP3 inflammasome pathway by inhibiting miR-29a in IBS-D, thereby relieving the inflammatory response of the intestinal mucosa and reconstructing the intestinal epithelial barrier. Elsevier 2022-12-15 /pmc/articles/PMC9800317/ /pubmed/36590561 http://dx.doi.org/10.1016/j.heliyon.2022.e12312 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Ke, Wei
Wang, Yongfu
Huang, Siyu
Liu, Shan
Zhu, He
Xie, Xiangyu
Yang, Huifei
Lu, Qin
Gan, Jianfeng
He, Guodong
Che, Fei
Wan, Xin
Tang, Hongmei
Paeoniflorin alleviates inflammatory response in IBS-D mouse model via downregulation of the NLRP3 inflammasome pathway with involvement of miR-29a
title Paeoniflorin alleviates inflammatory response in IBS-D mouse model via downregulation of the NLRP3 inflammasome pathway with involvement of miR-29a
title_full Paeoniflorin alleviates inflammatory response in IBS-D mouse model via downregulation of the NLRP3 inflammasome pathway with involvement of miR-29a
title_fullStr Paeoniflorin alleviates inflammatory response in IBS-D mouse model via downregulation of the NLRP3 inflammasome pathway with involvement of miR-29a
title_full_unstemmed Paeoniflorin alleviates inflammatory response in IBS-D mouse model via downregulation of the NLRP3 inflammasome pathway with involvement of miR-29a
title_short Paeoniflorin alleviates inflammatory response in IBS-D mouse model via downregulation of the NLRP3 inflammasome pathway with involvement of miR-29a
title_sort paeoniflorin alleviates inflammatory response in ibs-d mouse model via downregulation of the nlrp3 inflammasome pathway with involvement of mir-29a
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800317/
https://www.ncbi.nlm.nih.gov/pubmed/36590561
http://dx.doi.org/10.1016/j.heliyon.2022.e12312
work_keys_str_mv AT kewei paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT wangyongfu paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT huangsiyu paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT liushan paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT zhuhe paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT xiexiangyu paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT yanghuifei paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT luqin paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT ganjianfeng paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT heguodong paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT chefei paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT wanxin paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a
AT tanghongmei paeoniflorinalleviatesinflammatoryresponseinibsdmousemodelviadownregulationofthenlrp3inflammasomepathwaywithinvolvementofmir29a