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Bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses

Severe acute pancreatitis (SAP) is a critical illness characterized by a severe systemic inflammatory response resulting in persistent multiple organ failure and sepsis. The intestinal microbiome is increasingly appreciated to play a crucial role in modulation of AP disease outcome, but limited info...

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Autores principales: Li, Han, Xie, Jinyan, Guo, Xiuliu, Yang, Guilian, Cai, Bin, Liu, Jingtianyi, Yue, Mengjia, Tang, Yixin, Wang, Gan, Chen, Shuxian, Guo, Jialin, Qi, Xuchen, Wang, Donghai, Zheng, Huijun, Liu, Wei, Yu, Hong, Wang, Chunfeng, Zhu, Shu Jeffrey, Guo, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9542615/
https://www.ncbi.nlm.nih.gov/pubmed/36195972
http://dx.doi.org/10.1080/19490976.2022.2127456
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author Li, Han
Xie, Jinyan
Guo, Xiuliu
Yang, Guilian
Cai, Bin
Liu, Jingtianyi
Yue, Mengjia
Tang, Yixin
Wang, Gan
Chen, Shuxian
Guo, Jialin
Qi, Xuchen
Wang, Donghai
Zheng, Huijun
Liu, Wei
Yu, Hong
Wang, Chunfeng
Zhu, Shu Jeffrey
Guo, Feng
author_facet Li, Han
Xie, Jinyan
Guo, Xiuliu
Yang, Guilian
Cai, Bin
Liu, Jingtianyi
Yue, Mengjia
Tang, Yixin
Wang, Gan
Chen, Shuxian
Guo, Jialin
Qi, Xuchen
Wang, Donghai
Zheng, Huijun
Liu, Wei
Yu, Hong
Wang, Chunfeng
Zhu, Shu Jeffrey
Guo, Feng
author_sort Li, Han
collection PubMed
description Severe acute pancreatitis (SAP) is a critical illness characterized by a severe systemic inflammatory response resulting in persistent multiple organ failure and sepsis. The intestinal microbiome is increasingly appreciated to play a crucial role in modulation of AP disease outcome, but limited information is available about the identity and mechanism of action for specific commensal bacteria involved in AP-associated inflammation. Here we show that Bifidobacteria, particularly B. animalis, can protect against AP by regulating pancreatic and systemic inflammation in germ-free (GF) and oral antibiotic-treated (Abx) mouse models. Colonization by B. animalis and administration of its metabolite lactate protected Abx and GF mice from AP by reducing serum amylase concentration, ameliorating pancreatic lesions and improving survival rate after retrograde injection of sodium taurocholate. B. animalis relieved macrophage-associated local and systemic inflammation of AP in a TLR4/MyD88- and NLRP3/Caspase1-dependent manner through its metabolite lactate. Supporting our findings from the mouse study, clinical AP patients exhibited a decreased fecal abundance of Bifidobacteria that was inversely correlated with the severity of systemic inflammatory responses. These results may shed light on the heterogeneity of clinical outcomes and drive the development of more efficacious therapeutic interventions for AP, and potentially for other inflammatory disorders.
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spelling pubmed-95426152022-10-08 Bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses Li, Han Xie, Jinyan Guo, Xiuliu Yang, Guilian Cai, Bin Liu, Jingtianyi Yue, Mengjia Tang, Yixin Wang, Gan Chen, Shuxian Guo, Jialin Qi, Xuchen Wang, Donghai Zheng, Huijun Liu, Wei Yu, Hong Wang, Chunfeng Zhu, Shu Jeffrey Guo, Feng Gut Microbes Research Paper Severe acute pancreatitis (SAP) is a critical illness characterized by a severe systemic inflammatory response resulting in persistent multiple organ failure and sepsis. The intestinal microbiome is increasingly appreciated to play a crucial role in modulation of AP disease outcome, but limited information is available about the identity and mechanism of action for specific commensal bacteria involved in AP-associated inflammation. Here we show that Bifidobacteria, particularly B. animalis, can protect against AP by regulating pancreatic and systemic inflammation in germ-free (GF) and oral antibiotic-treated (Abx) mouse models. Colonization by B. animalis and administration of its metabolite lactate protected Abx and GF mice from AP by reducing serum amylase concentration, ameliorating pancreatic lesions and improving survival rate after retrograde injection of sodium taurocholate. B. animalis relieved macrophage-associated local and systemic inflammation of AP in a TLR4/MyD88- and NLRP3/Caspase1-dependent manner through its metabolite lactate. Supporting our findings from the mouse study, clinical AP patients exhibited a decreased fecal abundance of Bifidobacteria that was inversely correlated with the severity of systemic inflammatory responses. These results may shed light on the heterogeneity of clinical outcomes and drive the development of more efficacious therapeutic interventions for AP, and potentially for other inflammatory disorders. Taylor & Francis 2022-10-04 /pmc/articles/PMC9542615/ /pubmed/36195972 http://dx.doi.org/10.1080/19490976.2022.2127456 Text en © 2022 The Author(s). Published with license by Taylor & Francis Group, LLC. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Li, Han
Xie, Jinyan
Guo, Xiuliu
Yang, Guilian
Cai, Bin
Liu, Jingtianyi
Yue, Mengjia
Tang, Yixin
Wang, Gan
Chen, Shuxian
Guo, Jialin
Qi, Xuchen
Wang, Donghai
Zheng, Huijun
Liu, Wei
Yu, Hong
Wang, Chunfeng
Zhu, Shu Jeffrey
Guo, Feng
Bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses
title Bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses
title_full Bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses
title_fullStr Bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses
title_full_unstemmed Bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses
title_short Bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses
title_sort bifidobacterium spp. and their metabolite lactate protect against acute pancreatitis via inhibition of pancreatic and systemic inflammatory responses
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9542615/
https://www.ncbi.nlm.nih.gov/pubmed/36195972
http://dx.doi.org/10.1080/19490976.2022.2127456
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