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Molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating HO-1 and Sirt1 expression

Fatty liver has lower tolerance against ischemia-reperfusion (I/R) injury in liver operations, including liver transplantation. Seeking to ameliorate liver injury following I/R in fatty liver, we examined the protective effect of hydrogen (H(2)) saline on I/R liver injury in a methionine and choline...

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Autores principales: Li, Shaowei, Fujino, Masayuki, Ichimaru, Naotsugu, Kurokawa, Ryosuke, Hirano, Shinichi, Mou, Lisha, Takahara, Shiro, Takahara, Terumi, Li, Xiao-Kang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6145907/
https://www.ncbi.nlm.nih.gov/pubmed/30232347
http://dx.doi.org/10.1038/s41598-018-32411-4
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author Li, Shaowei
Fujino, Masayuki
Ichimaru, Naotsugu
Kurokawa, Ryosuke
Hirano, Shinichi
Mou, Lisha
Takahara, Shiro
Takahara, Terumi
Li, Xiao-Kang
author_facet Li, Shaowei
Fujino, Masayuki
Ichimaru, Naotsugu
Kurokawa, Ryosuke
Hirano, Shinichi
Mou, Lisha
Takahara, Shiro
Takahara, Terumi
Li, Xiao-Kang
author_sort Li, Shaowei
collection PubMed
description Fatty liver has lower tolerance against ischemia-reperfusion (I/R) injury in liver operations, including liver transplantation. Seeking to ameliorate liver injury following I/R in fatty liver, we examined the protective effect of hydrogen (H(2)) saline on I/R liver injury in a methionine and choline-deficient plus high fat (MCDHF) diet-induced fatty liver mouse model. Saline containing 7 ppm H(2) was administrated during the process of I/R. Livers were obtained and analyzed. Primary hepatocytes and Kupffer cells (KCs) were obtained from fatty liver and subjected to hypoxia/reoxygenation. Apoptosis-related proteins and components of the signaling pathway were analyzed after treatment with hydrogen gas. The MCDHF I/R group showed higher levels of AST and ALT in serum, TUNEL-positive apoptotic cells, F4/80 immunopositive cells, mRNA levels of inflammatory cytokines, constituents of the signaling pathway, pro-apoptotic molecules in liver, and KCs and/or primary hepatocytes, compared to the control group. In contrast, H(2) treatment significantly suppressed the signs of I/R injury in fatty liver. Moreover, the expression of Bcl-2, HO-1, and Sirt1 in liver, KCs, and hepatocytes by hydrogen gas were increased, whereas caspase activation, Bax, and acetylation of p53 were suppressed by hydrogen gas. These results demonstrated that H(2) treatment ameliorated I/R liver injury in a fatty liver model by reducing hepatocyte apoptosis, inhibiting macrophage activation and inflammatory cytokines, and inducing HO-1 and Sirt1 expression. Taken togather, treatment with H(2) saline may have a protective effect and safe therapeutic activity during I/R events, such as in liver transplantation with fatty liver.
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spelling pubmed-61459072018-09-24 Molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating HO-1 and Sirt1 expression Li, Shaowei Fujino, Masayuki Ichimaru, Naotsugu Kurokawa, Ryosuke Hirano, Shinichi Mou, Lisha Takahara, Shiro Takahara, Terumi Li, Xiao-Kang Sci Rep Article Fatty liver has lower tolerance against ischemia-reperfusion (I/R) injury in liver operations, including liver transplantation. Seeking to ameliorate liver injury following I/R in fatty liver, we examined the protective effect of hydrogen (H(2)) saline on I/R liver injury in a methionine and choline-deficient plus high fat (MCDHF) diet-induced fatty liver mouse model. Saline containing 7 ppm H(2) was administrated during the process of I/R. Livers were obtained and analyzed. Primary hepatocytes and Kupffer cells (KCs) were obtained from fatty liver and subjected to hypoxia/reoxygenation. Apoptosis-related proteins and components of the signaling pathway were analyzed after treatment with hydrogen gas. The MCDHF I/R group showed higher levels of AST and ALT in serum, TUNEL-positive apoptotic cells, F4/80 immunopositive cells, mRNA levels of inflammatory cytokines, constituents of the signaling pathway, pro-apoptotic molecules in liver, and KCs and/or primary hepatocytes, compared to the control group. In contrast, H(2) treatment significantly suppressed the signs of I/R injury in fatty liver. Moreover, the expression of Bcl-2, HO-1, and Sirt1 in liver, KCs, and hepatocytes by hydrogen gas were increased, whereas caspase activation, Bax, and acetylation of p53 were suppressed by hydrogen gas. These results demonstrated that H(2) treatment ameliorated I/R liver injury in a fatty liver model by reducing hepatocyte apoptosis, inhibiting macrophage activation and inflammatory cytokines, and inducing HO-1 and Sirt1 expression. Taken togather, treatment with H(2) saline may have a protective effect and safe therapeutic activity during I/R events, such as in liver transplantation with fatty liver. Nature Publishing Group UK 2018-09-19 /pmc/articles/PMC6145907/ /pubmed/30232347 http://dx.doi.org/10.1038/s41598-018-32411-4 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Li, Shaowei
Fujino, Masayuki
Ichimaru, Naotsugu
Kurokawa, Ryosuke
Hirano, Shinichi
Mou, Lisha
Takahara, Shiro
Takahara, Terumi
Li, Xiao-Kang
Molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating HO-1 and Sirt1 expression
title Molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating HO-1 and Sirt1 expression
title_full Molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating HO-1 and Sirt1 expression
title_fullStr Molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating HO-1 and Sirt1 expression
title_full_unstemmed Molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating HO-1 and Sirt1 expression
title_short Molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating HO-1 and Sirt1 expression
title_sort molecular hydrogen protects against ischemia-reperfusion injury in a mouse fatty liver model via regulating ho-1 and sirt1 expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6145907/
https://www.ncbi.nlm.nih.gov/pubmed/30232347
http://dx.doi.org/10.1038/s41598-018-32411-4
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