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IDH2 Deficiency Aggravates Fructose-Induced NAFLD by Modulating Hepatic Fatty Acid Metabolism and Activating Inflammatory Signaling in Female Mice

Fructose is a strong risk factor for non-alcoholic fatty liver disease (NAFLD), resulting from the disruption of redox systems by excessive reactive oxygen species production in the liver cells. Of note, recent epidemiological studies indicated that women are more prone to developing metabolic syndr...

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Autores principales: Pan, Jeong Hoon, Kim, Hoe-Sung, Beane, Kaleigh Elizabeth, Montalbano, Allison Michelle, Lee, Jin Hyup, Kim, Young Jun, Kim, Jun Ho, Kong, Byungwhi Caleb, Kim, Sangyub, Park, Jeen-Woo, Shin, Eui-Cheol, Kim, Jae Kyeom
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6024877/
https://www.ncbi.nlm.nih.gov/pubmed/29861476
http://dx.doi.org/10.3390/nu10060679
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author Pan, Jeong Hoon
Kim, Hoe-Sung
Beane, Kaleigh Elizabeth
Montalbano, Allison Michelle
Lee, Jin Hyup
Kim, Young Jun
Kim, Jun Ho
Kong, Byungwhi Caleb
Kim, Sangyub
Park, Jeen-Woo
Shin, Eui-Cheol
Kim, Jae Kyeom
author_facet Pan, Jeong Hoon
Kim, Hoe-Sung
Beane, Kaleigh Elizabeth
Montalbano, Allison Michelle
Lee, Jin Hyup
Kim, Young Jun
Kim, Jun Ho
Kong, Byungwhi Caleb
Kim, Sangyub
Park, Jeen-Woo
Shin, Eui-Cheol
Kim, Jae Kyeom
author_sort Pan, Jeong Hoon
collection PubMed
description Fructose is a strong risk factor for non-alcoholic fatty liver disease (NAFLD), resulting from the disruption of redox systems by excessive reactive oxygen species production in the liver cells. Of note, recent epidemiological studies indicated that women are more prone to developing metabolic syndrome in response to fructose-sweetened beverages. Hence, we examined whether disruption of the redox system through a deletion of NADPH supplying mitochondrial enzyme, NADP(+)-dependent isocitrate dehydrogenase (IDH2), exacerbates fructose-induced NAFLD conditions in C57BL/6 female mice. Wild-type (WT) and IDH2 knockout (KO) mice were treated with either water or 34% fructose water over six weeks. NAFLD phenotypes and key proteins and mRNAs involved in the inflammatory pathway (e.g., NF-κB p65 and IL-1β) were assessed. Hepatic lipid accumulation was significantly increased in IDH2 KO mice fed fructose compared to the WT counterpart. Neutrophil infiltration was observed only in IDH2 KO mice fed fructose. Furthermore, phosphorylation of NF-κB p65 and expression of IL-1β was remarkably upregulated in IDH2 KO mice fed fructose, and expression of IκBα was decreased by fructose treatment in both WT and IDH2 KO groups. For the first time, we report our novel findings that IDH2 KO female mice may be more susceptible to fructose-induced NAFLD and the associated inflammatory response, suggesting a mechanistic role of IDH2 in metabolic diseases.
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spelling pubmed-60248772018-07-08 IDH2 Deficiency Aggravates Fructose-Induced NAFLD by Modulating Hepatic Fatty Acid Metabolism and Activating Inflammatory Signaling in Female Mice Pan, Jeong Hoon Kim, Hoe-Sung Beane, Kaleigh Elizabeth Montalbano, Allison Michelle Lee, Jin Hyup Kim, Young Jun Kim, Jun Ho Kong, Byungwhi Caleb Kim, Sangyub Park, Jeen-Woo Shin, Eui-Cheol Kim, Jae Kyeom Nutrients Communication Fructose is a strong risk factor for non-alcoholic fatty liver disease (NAFLD), resulting from the disruption of redox systems by excessive reactive oxygen species production in the liver cells. Of note, recent epidemiological studies indicated that women are more prone to developing metabolic syndrome in response to fructose-sweetened beverages. Hence, we examined whether disruption of the redox system through a deletion of NADPH supplying mitochondrial enzyme, NADP(+)-dependent isocitrate dehydrogenase (IDH2), exacerbates fructose-induced NAFLD conditions in C57BL/6 female mice. Wild-type (WT) and IDH2 knockout (KO) mice were treated with either water or 34% fructose water over six weeks. NAFLD phenotypes and key proteins and mRNAs involved in the inflammatory pathway (e.g., NF-κB p65 and IL-1β) were assessed. Hepatic lipid accumulation was significantly increased in IDH2 KO mice fed fructose compared to the WT counterpart. Neutrophil infiltration was observed only in IDH2 KO mice fed fructose. Furthermore, phosphorylation of NF-κB p65 and expression of IL-1β was remarkably upregulated in IDH2 KO mice fed fructose, and expression of IκBα was decreased by fructose treatment in both WT and IDH2 KO groups. For the first time, we report our novel findings that IDH2 KO female mice may be more susceptible to fructose-induced NAFLD and the associated inflammatory response, suggesting a mechanistic role of IDH2 in metabolic diseases. MDPI 2018-05-27 /pmc/articles/PMC6024877/ /pubmed/29861476 http://dx.doi.org/10.3390/nu10060679 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Pan, Jeong Hoon
Kim, Hoe-Sung
Beane, Kaleigh Elizabeth
Montalbano, Allison Michelle
Lee, Jin Hyup
Kim, Young Jun
Kim, Jun Ho
Kong, Byungwhi Caleb
Kim, Sangyub
Park, Jeen-Woo
Shin, Eui-Cheol
Kim, Jae Kyeom
IDH2 Deficiency Aggravates Fructose-Induced NAFLD by Modulating Hepatic Fatty Acid Metabolism and Activating Inflammatory Signaling in Female Mice
title IDH2 Deficiency Aggravates Fructose-Induced NAFLD by Modulating Hepatic Fatty Acid Metabolism and Activating Inflammatory Signaling in Female Mice
title_full IDH2 Deficiency Aggravates Fructose-Induced NAFLD by Modulating Hepatic Fatty Acid Metabolism and Activating Inflammatory Signaling in Female Mice
title_fullStr IDH2 Deficiency Aggravates Fructose-Induced NAFLD by Modulating Hepatic Fatty Acid Metabolism and Activating Inflammatory Signaling in Female Mice
title_full_unstemmed IDH2 Deficiency Aggravates Fructose-Induced NAFLD by Modulating Hepatic Fatty Acid Metabolism and Activating Inflammatory Signaling in Female Mice
title_short IDH2 Deficiency Aggravates Fructose-Induced NAFLD by Modulating Hepatic Fatty Acid Metabolism and Activating Inflammatory Signaling in Female Mice
title_sort idh2 deficiency aggravates fructose-induced nafld by modulating hepatic fatty acid metabolism and activating inflammatory signaling in female mice
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6024877/
https://www.ncbi.nlm.nih.gov/pubmed/29861476
http://dx.doi.org/10.3390/nu10060679
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