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Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate

Chronic prostatitis/chronic pelvic pain syndrome (CP/CPPS) is a very common urological disorder and has been gradually regarded as an immune-mediated disease. Multiple studies have indicated that the gut microflora plays a pivotal part in immune homeostasis and autoimmune disorder development. Howev...

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Autores principales: Du, He-Xi, Yue, Shao-Yu, Niu, Di, Liu, Chang, Zhang, Li-Gang, Chen, Jing, Chen, Yang, Guan, Yu, Hua, Xiao-Liang, Li, Chun, Chen, Xian-Guo, Zhang, Li, Liang, Chao-Zhao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9289123/
https://www.ncbi.nlm.nih.gov/pubmed/35860242
http://dx.doi.org/10.3389/fimmu.2022.915218
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author Du, He-Xi
Yue, Shao-Yu
Niu, Di
Liu, Chang
Zhang, Li-Gang
Chen, Jing
Chen, Yang
Guan, Yu
Hua, Xiao-Liang
Li, Chun
Chen, Xian-Guo
Zhang, Li
Liang, Chao-Zhao
author_facet Du, He-Xi
Yue, Shao-Yu
Niu, Di
Liu, Chang
Zhang, Li-Gang
Chen, Jing
Chen, Yang
Guan, Yu
Hua, Xiao-Liang
Li, Chun
Chen, Xian-Guo
Zhang, Li
Liang, Chao-Zhao
author_sort Du, He-Xi
collection PubMed
description Chronic prostatitis/chronic pelvic pain syndrome (CP/CPPS) is a very common urological disorder and has been gradually regarded as an immune-mediated disease. Multiple studies have indicated that the gut microflora plays a pivotal part in immune homeostasis and autoimmune disorder development. However, whether the gut microflora affects the CP/CPPS, and the underlying mechanism behind them remain unclear. Here, we built an experimental autoimmune prostatitis (EAP) mouse model by subcutaneous immunity and identified that its Th17/Treg frequency was imbalanced. Using fecal 16s rRNA sequencing and untargeted/targeted metabolomics, we discovered that the diversity and relative abundance of gut microflora and their metabolites were obviously different between the control and the EAP group. Propionic acid, a kind of short-chain fatty acid (SCFA), was decreased in EAP mice compared to that in controls, and supplementation with propionic acid reduced susceptibility to EAP and corrected the imbalance of Th17/Treg cell differentiation in vivo and in vitro. Furthermore, SCFA receptor G-protein-coupled receptor 43 and intracellular histone deacetylase 6 regulated by propionic acid in Th17 and Treg cells were also evaluated. Lastly, we observed that fecal transplantation from EAP mice induced the decrease of Treg cell frequency in recipient mice. Our data showed that gut dysbiosis contributed to a Th17/Treg differentiation imbalance in EAP via the decrease of metabolite propionic acid and provided valuable immunological groundwork for further intervention in immunologic derangement of CP/CPPS by targeting propionic acid.
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spelling pubmed-92891232022-07-19 Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate Du, He-Xi Yue, Shao-Yu Niu, Di Liu, Chang Zhang, Li-Gang Chen, Jing Chen, Yang Guan, Yu Hua, Xiao-Liang Li, Chun Chen, Xian-Guo Zhang, Li Liang, Chao-Zhao Front Immunol Immunology Chronic prostatitis/chronic pelvic pain syndrome (CP/CPPS) is a very common urological disorder and has been gradually regarded as an immune-mediated disease. Multiple studies have indicated that the gut microflora plays a pivotal part in immune homeostasis and autoimmune disorder development. However, whether the gut microflora affects the CP/CPPS, and the underlying mechanism behind them remain unclear. Here, we built an experimental autoimmune prostatitis (EAP) mouse model by subcutaneous immunity and identified that its Th17/Treg frequency was imbalanced. Using fecal 16s rRNA sequencing and untargeted/targeted metabolomics, we discovered that the diversity and relative abundance of gut microflora and their metabolites were obviously different between the control and the EAP group. Propionic acid, a kind of short-chain fatty acid (SCFA), was decreased in EAP mice compared to that in controls, and supplementation with propionic acid reduced susceptibility to EAP and corrected the imbalance of Th17/Treg cell differentiation in vivo and in vitro. Furthermore, SCFA receptor G-protein-coupled receptor 43 and intracellular histone deacetylase 6 regulated by propionic acid in Th17 and Treg cells were also evaluated. Lastly, we observed that fecal transplantation from EAP mice induced the decrease of Treg cell frequency in recipient mice. Our data showed that gut dysbiosis contributed to a Th17/Treg differentiation imbalance in EAP via the decrease of metabolite propionic acid and provided valuable immunological groundwork for further intervention in immunologic derangement of CP/CPPS by targeting propionic acid. Frontiers Media S.A. 2022-07-04 /pmc/articles/PMC9289123/ /pubmed/35860242 http://dx.doi.org/10.3389/fimmu.2022.915218 Text en Copyright © 2022 Du, Yue, Niu, Liu, Zhang, Chen, Chen, Guan, Hua, Li, Chen, Zhang and Liang 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 Immunology
Du, He-Xi
Yue, Shao-Yu
Niu, Di
Liu, Chang
Zhang, Li-Gang
Chen, Jing
Chen, Yang
Guan, Yu
Hua, Xiao-Liang
Li, Chun
Chen, Xian-Guo
Zhang, Li
Liang, Chao-Zhao
Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate
title Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate
title_full Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate
title_fullStr Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate
title_full_unstemmed Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate
title_short Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate
title_sort gut microflora modulates th17/treg cell differentiation in experimental autoimmune prostatitis via the short-chain fatty acid propionate
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9289123/
https://www.ncbi.nlm.nih.gov/pubmed/35860242
http://dx.doi.org/10.3389/fimmu.2022.915218
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