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Metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex I

Arsenic trioxide (ATO) is a well-accepted chemotherapy agent in managing promyelocytic leukemia. ATO often causes severe health hazards such as hepatotoxicity, dermatosis, neurotoxicity, nephrotoxicity and cardiotoxicity. The production of reactive oxygen species, (ROS) play a significant role in AT...

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Autores principales: Ling, Sunbin, Shan, Qiaonan, Liu, Peng, Feng, Tingting, Zhang, Xuanyu, Xiang, Penghui, Chen, Kangchen, Xie, Haiyang, Song, Penghong, Zhou, Lin, Liu, Jimin, Zheng, Shusen, Xu, Xiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5775401/
https://www.ncbi.nlm.nih.gov/pubmed/29095437
http://dx.doi.org/10.1038/cddis.2017.482
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author Ling, Sunbin
Shan, Qiaonan
Liu, Peng
Feng, Tingting
Zhang, Xuanyu
Xiang, Penghui
Chen, Kangchen
Xie, Haiyang
Song, Penghong
Zhou, Lin
Liu, Jimin
Zheng, Shusen
Xu, Xiao
author_facet Ling, Sunbin
Shan, Qiaonan
Liu, Peng
Feng, Tingting
Zhang, Xuanyu
Xiang, Penghui
Chen, Kangchen
Xie, Haiyang
Song, Penghong
Zhou, Lin
Liu, Jimin
Zheng, Shusen
Xu, Xiao
author_sort Ling, Sunbin
collection PubMed
description Arsenic trioxide (ATO) is a well-accepted chemotherapy agent in managing promyelocytic leukemia. ATO often causes severe health hazards such as hepatotoxicity, dermatosis, neurotoxicity, nephrotoxicity and cardiotoxicity. The production of reactive oxygen species, (ROS) play a significant role in ATO-induced hepatotoxicity. The oral hypoglycemic drug, metformin, is considered to be a potential novel agent for chemoprevention in the treatment of cancer. Moreover, metformin has also been shown to have hepatoprotective effects. In the present study, we demonstrated that metformin protected normal hepatocytes from ATO-induced apoptotic cell death in vitro and in vivo. Gene expression screening revealed that glucose metabolism might be related to the metformin-induced protective effect on ATO-treated AML12 cells. The metformin-promoted or induced glycolysis was not responsible for the protection of AML12 cells from ATO-induced apoptotic cell death. Instead, metformin increased the intracellular NADH/NAD+ ratio by inhibiting mitochondrial respiratory chain complex I, further decreasing the intracellular ROS induced by ATO. Treatment with low glucose or rotenone, a mitochondrial respiratory chain complex I inhibitor, also protected AML12 cells from ATO-induced apoptotic cell death. We show for the first time that metformin protects the hepatocyte from ATO by regulating the mitochondrial function. With its properties of chemoprevention, chemosensitization and the amelioration of liver damage, metformin has great prospects for clinical application other than type 2 diabetes mellitus (T2DM).
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spelling pubmed-57754012018-01-23 Metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex I Ling, Sunbin Shan, Qiaonan Liu, Peng Feng, Tingting Zhang, Xuanyu Xiang, Penghui Chen, Kangchen Xie, Haiyang Song, Penghong Zhou, Lin Liu, Jimin Zheng, Shusen Xu, Xiao Cell Death Dis Original Article Arsenic trioxide (ATO) is a well-accepted chemotherapy agent in managing promyelocytic leukemia. ATO often causes severe health hazards such as hepatotoxicity, dermatosis, neurotoxicity, nephrotoxicity and cardiotoxicity. The production of reactive oxygen species, (ROS) play a significant role in ATO-induced hepatotoxicity. The oral hypoglycemic drug, metformin, is considered to be a potential novel agent for chemoprevention in the treatment of cancer. Moreover, metformin has also been shown to have hepatoprotective effects. In the present study, we demonstrated that metformin protected normal hepatocytes from ATO-induced apoptotic cell death in vitro and in vivo. Gene expression screening revealed that glucose metabolism might be related to the metformin-induced protective effect on ATO-treated AML12 cells. The metformin-promoted or induced glycolysis was not responsible for the protection of AML12 cells from ATO-induced apoptotic cell death. Instead, metformin increased the intracellular NADH/NAD+ ratio by inhibiting mitochondrial respiratory chain complex I, further decreasing the intracellular ROS induced by ATO. Treatment with low glucose or rotenone, a mitochondrial respiratory chain complex I inhibitor, also protected AML12 cells from ATO-induced apoptotic cell death. We show for the first time that metformin protects the hepatocyte from ATO by regulating the mitochondrial function. With its properties of chemoprevention, chemosensitization and the amelioration of liver damage, metformin has great prospects for clinical application other than type 2 diabetes mellitus (T2DM). Nature Publishing Group 2017-11 2017-11-02 /pmc/articles/PMC5775401/ /pubmed/29095437 http://dx.doi.org/10.1038/cddis.2017.482 Text en Copyright © 2017 The Author(s) http://creativecommons.org/licenses/by/4.0/ Cell Death and Disease is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Ling, Sunbin
Shan, Qiaonan
Liu, Peng
Feng, Tingting
Zhang, Xuanyu
Xiang, Penghui
Chen, Kangchen
Xie, Haiyang
Song, Penghong
Zhou, Lin
Liu, Jimin
Zheng, Shusen
Xu, Xiao
Metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex I
title Metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex I
title_full Metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex I
title_fullStr Metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex I
title_full_unstemmed Metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex I
title_short Metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex I
title_sort metformin ameliorates arsenic trioxide hepatotoxicity via inhibiting mitochondrial complex i
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5775401/
https://www.ncbi.nlm.nih.gov/pubmed/29095437
http://dx.doi.org/10.1038/cddis.2017.482
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