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The Molecular Mechanism of Hepatic Lipid Metabolism Disorder Caused by NaAsO(2) through Regulating the ERK/PPAR Signaling Pathway

Chronic arsenic exposure is a risk factor for human fatty liver disease, and the ERK signaling pathway plays an important role in the regulation of liver lipid metabolism. However, whether ERK plays a role in the progression of arsenic-induced liver lipid metabolism disorder and the specific mechani...

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Autores principales: Wu, Liping, Zhang, Shuling, Zhang, Qi, Wei, Shaofeng, Wang, Guoze, Luo, Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8938049/
https://www.ncbi.nlm.nih.gov/pubmed/35320977
http://dx.doi.org/10.1155/2022/6405911
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author Wu, Liping
Zhang, Shuling
Zhang, Qi
Wei, Shaofeng
Wang, Guoze
Luo, Peng
author_facet Wu, Liping
Zhang, Shuling
Zhang, Qi
Wei, Shaofeng
Wang, Guoze
Luo, Peng
author_sort Wu, Liping
collection PubMed
description Chronic arsenic exposure is a risk factor for human fatty liver disease, and the ERK signaling pathway plays an important role in the regulation of liver lipid metabolism. However, whether ERK plays a role in the progression of arsenic-induced liver lipid metabolism disorder and the specific mechanism remain unclear. Here, by constructing a rat model of liver lipid metabolism disorder induced by chronic arsenic exposure, we demonstrated that ERK might regulate arsenic-induced liver lipid metabolism disorders through the PPAR signaling pathway. Arsenic could upregulate the expression of PPARγ and CD36 in the rat liver, decrease the expression of PPARα and CPT-1 in the rat liver, increase the organ coefficient of the rat liver, decrease the content of TG in rat serum, and promote fat deposition in the rat liver. In the arsenic-induced rat model of hepatic lipid metabolism disorder, we found that the expression of p-ERK was increased. In order to further explore whether the ERK signaling pathway was involved in arsenic-induced liver lipid metabolism disorder, we exposed L-02 cells to different arsenic concentrations, and the results showed that arsenic significantly increased the expression of P-ERK in L-02 cells in a dose-dependent manner. We further treated L-02 cells with ERK inhibitors and found that the expression of TG, PPARα, and CPT-1 in L-02 cells increased, while the expression of P-ERK, PPARγ, and CD36 decreased. In conclusion, ERK may be involved in arsenic-induced liver lipid metabolism disorder by regulating the PPAR signaling pathway. These findings are expected to provide a new targeting strategy for arsenic-induced liver lipid metabolism disorder.
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spelling pubmed-89380492022-03-22 The Molecular Mechanism of Hepatic Lipid Metabolism Disorder Caused by NaAsO(2) through Regulating the ERK/PPAR Signaling Pathway Wu, Liping Zhang, Shuling Zhang, Qi Wei, Shaofeng Wang, Guoze Luo, Peng Oxid Med Cell Longev Research Article Chronic arsenic exposure is a risk factor for human fatty liver disease, and the ERK signaling pathway plays an important role in the regulation of liver lipid metabolism. However, whether ERK plays a role in the progression of arsenic-induced liver lipid metabolism disorder and the specific mechanism remain unclear. Here, by constructing a rat model of liver lipid metabolism disorder induced by chronic arsenic exposure, we demonstrated that ERK might regulate arsenic-induced liver lipid metabolism disorders through the PPAR signaling pathway. Arsenic could upregulate the expression of PPARγ and CD36 in the rat liver, decrease the expression of PPARα and CPT-1 in the rat liver, increase the organ coefficient of the rat liver, decrease the content of TG in rat serum, and promote fat deposition in the rat liver. In the arsenic-induced rat model of hepatic lipid metabolism disorder, we found that the expression of p-ERK was increased. In order to further explore whether the ERK signaling pathway was involved in arsenic-induced liver lipid metabolism disorder, we exposed L-02 cells to different arsenic concentrations, and the results showed that arsenic significantly increased the expression of P-ERK in L-02 cells in a dose-dependent manner. We further treated L-02 cells with ERK inhibitors and found that the expression of TG, PPARα, and CPT-1 in L-02 cells increased, while the expression of P-ERK, PPARγ, and CD36 decreased. In conclusion, ERK may be involved in arsenic-induced liver lipid metabolism disorder by regulating the PPAR signaling pathway. These findings are expected to provide a new targeting strategy for arsenic-induced liver lipid metabolism disorder. Hindawi 2022-03-14 /pmc/articles/PMC8938049/ /pubmed/35320977 http://dx.doi.org/10.1155/2022/6405911 Text en Copyright © 2022 Liping Wu et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wu, Liping
Zhang, Shuling
Zhang, Qi
Wei, Shaofeng
Wang, Guoze
Luo, Peng
The Molecular Mechanism of Hepatic Lipid Metabolism Disorder Caused by NaAsO(2) through Regulating the ERK/PPAR Signaling Pathway
title The Molecular Mechanism of Hepatic Lipid Metabolism Disorder Caused by NaAsO(2) through Regulating the ERK/PPAR Signaling Pathway
title_full The Molecular Mechanism of Hepatic Lipid Metabolism Disorder Caused by NaAsO(2) through Regulating the ERK/PPAR Signaling Pathway
title_fullStr The Molecular Mechanism of Hepatic Lipid Metabolism Disorder Caused by NaAsO(2) through Regulating the ERK/PPAR Signaling Pathway
title_full_unstemmed The Molecular Mechanism of Hepatic Lipid Metabolism Disorder Caused by NaAsO(2) through Regulating the ERK/PPAR Signaling Pathway
title_short The Molecular Mechanism of Hepatic Lipid Metabolism Disorder Caused by NaAsO(2) through Regulating the ERK/PPAR Signaling Pathway
title_sort molecular mechanism of hepatic lipid metabolism disorder caused by naaso(2) through regulating the erk/ppar signaling pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8938049/
https://www.ncbi.nlm.nih.gov/pubmed/35320977
http://dx.doi.org/10.1155/2022/6405911
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