Cargando…

Enhanced autophagy contributes to protective effects of IL-22 against acetaminophen-induced liver injury

Acute or acute-on-chronic liver failure is a leading cause of death in liver diseases without effective treatment. Interleukin-22 (IL-22) is currently in clinical trials for the treatment of severe alcoholic hepatitis, but the underlying mechanisms remain to be explored. Autophagy plays a critical r...

Descripción completa

Detalles Bibliográficos
Autores principales: Mo, Ruidong, Lai, Rongtao, Lu, Jie, Zhuang, Yan, Zhou, Tianhui, Jiang, Shaowen, Ren, Peipei, Li, Ziqiang, Cao, Zhujun, Liu, Yuhan, Chen, Lichang, Xiong, Lifu, Wang, Peng, Wang, Hui, Cai, Wei, Xiang, Xiaogang, Bao, Shisan, Xie, Qing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6096391/
https://www.ncbi.nlm.nih.gov/pubmed/30128045
http://dx.doi.org/10.7150/thno.25798
_version_ 1783348095997706240
author Mo, Ruidong
Lai, Rongtao
Lu, Jie
Zhuang, Yan
Zhou, Tianhui
Jiang, Shaowen
Ren, Peipei
Li, Ziqiang
Cao, Zhujun
Liu, Yuhan
Chen, Lichang
Xiong, Lifu
Wang, Peng
Wang, Hui
Cai, Wei
Xiang, Xiaogang
Bao, Shisan
Xie, Qing
author_facet Mo, Ruidong
Lai, Rongtao
Lu, Jie
Zhuang, Yan
Zhou, Tianhui
Jiang, Shaowen
Ren, Peipei
Li, Ziqiang
Cao, Zhujun
Liu, Yuhan
Chen, Lichang
Xiong, Lifu
Wang, Peng
Wang, Hui
Cai, Wei
Xiang, Xiaogang
Bao, Shisan
Xie, Qing
author_sort Mo, Ruidong
collection PubMed
description Acute or acute-on-chronic liver failure is a leading cause of death in liver diseases without effective treatment. Interleukin-22 (IL-22) is currently in clinical trials for the treatment of severe alcoholic hepatitis, but the underlying mechanisms remain to be explored. Autophagy plays a critical role in alleviating liver injury. The aim of the current study is to explore the role of autophagy in IL-22-mediated hepato-protective effect against acetaminophen (APAP)-induced liver injury. Methods: A model of acute liver injury induced by APAP was used in vivo. IL-22 was administrated to the APAP-treated mice. Hepatocytes were pre-incubated with IL-22, followed by exposure to APAP for in vitro analyses. Results: IL-22 administration significantly reduced serum ALT and AST, hepatic reactive oxygen species, and liver necrosis in APAP-challenged mice. APAP treatment increased hepatic autophagosomes, which was further intensified by IL-22 co-treatment. Hepatic LC3-II was moderately upregulated after APAP administration without obvious alteration of phosphorylation of AMP-activated kinase (p-AMPK). IL-22 pretreatment significantly upregulated hepatic LC3-II and p-AMPK in APAP-treated mice. IL-22 also alleviated APAP-induced cytotoxicity and upregulated LC3-II and p-AMPK expression in cultured hepatocytes treated with APAP in vitro. When p-AMPK was blocked with compound C (an AMPK inhibitor), IL-22-mediated LC3-II conversion and protection against APAP-induced cytotoxicity was weakened. Conclusions: Enhanced AMPK-dependent autophagy contributes to protective effects of IL-22 against APAP-induced liver injury.
format Online
Article
Text
id pubmed-6096391
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-60963912018-08-20 Enhanced autophagy contributes to protective effects of IL-22 against acetaminophen-induced liver injury Mo, Ruidong Lai, Rongtao Lu, Jie Zhuang, Yan Zhou, Tianhui Jiang, Shaowen Ren, Peipei Li, Ziqiang Cao, Zhujun Liu, Yuhan Chen, Lichang Xiong, Lifu Wang, Peng Wang, Hui Cai, Wei Xiang, Xiaogang Bao, Shisan Xie, Qing Theranostics Research Paper Acute or acute-on-chronic liver failure is a leading cause of death in liver diseases without effective treatment. Interleukin-22 (IL-22) is currently in clinical trials for the treatment of severe alcoholic hepatitis, but the underlying mechanisms remain to be explored. Autophagy plays a critical role in alleviating liver injury. The aim of the current study is to explore the role of autophagy in IL-22-mediated hepato-protective effect against acetaminophen (APAP)-induced liver injury. Methods: A model of acute liver injury induced by APAP was used in vivo. IL-22 was administrated to the APAP-treated mice. Hepatocytes were pre-incubated with IL-22, followed by exposure to APAP for in vitro analyses. Results: IL-22 administration significantly reduced serum ALT and AST, hepatic reactive oxygen species, and liver necrosis in APAP-challenged mice. APAP treatment increased hepatic autophagosomes, which was further intensified by IL-22 co-treatment. Hepatic LC3-II was moderately upregulated after APAP administration without obvious alteration of phosphorylation of AMP-activated kinase (p-AMPK). IL-22 pretreatment significantly upregulated hepatic LC3-II and p-AMPK in APAP-treated mice. IL-22 also alleviated APAP-induced cytotoxicity and upregulated LC3-II and p-AMPK expression in cultured hepatocytes treated with APAP in vitro. When p-AMPK was blocked with compound C (an AMPK inhibitor), IL-22-mediated LC3-II conversion and protection against APAP-induced cytotoxicity was weakened. Conclusions: Enhanced AMPK-dependent autophagy contributes to protective effects of IL-22 against APAP-induced liver injury. Ivyspring International Publisher 2018-07-30 /pmc/articles/PMC6096391/ /pubmed/30128045 http://dx.doi.org/10.7150/thno.25798 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Mo, Ruidong
Lai, Rongtao
Lu, Jie
Zhuang, Yan
Zhou, Tianhui
Jiang, Shaowen
Ren, Peipei
Li, Ziqiang
Cao, Zhujun
Liu, Yuhan
Chen, Lichang
Xiong, Lifu
Wang, Peng
Wang, Hui
Cai, Wei
Xiang, Xiaogang
Bao, Shisan
Xie, Qing
Enhanced autophagy contributes to protective effects of IL-22 against acetaminophen-induced liver injury
title Enhanced autophagy contributes to protective effects of IL-22 against acetaminophen-induced liver injury
title_full Enhanced autophagy contributes to protective effects of IL-22 against acetaminophen-induced liver injury
title_fullStr Enhanced autophagy contributes to protective effects of IL-22 against acetaminophen-induced liver injury
title_full_unstemmed Enhanced autophagy contributes to protective effects of IL-22 against acetaminophen-induced liver injury
title_short Enhanced autophagy contributes to protective effects of IL-22 against acetaminophen-induced liver injury
title_sort enhanced autophagy contributes to protective effects of il-22 against acetaminophen-induced liver injury
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6096391/
https://www.ncbi.nlm.nih.gov/pubmed/30128045
http://dx.doi.org/10.7150/thno.25798
work_keys_str_mv AT moruidong enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT lairongtao enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT lujie enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT zhuangyan enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT zhoutianhui enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT jiangshaowen enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT renpeipei enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT liziqiang enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT caozhujun enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT liuyuhan enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT chenlichang enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT xionglifu enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT wangpeng enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT wanghui enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT caiwei enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT xiangxiaogang enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT baoshisan enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury
AT xieqing enhancedautophagycontributestoprotectiveeffectsofil22againstacetaminopheninducedliverinjury