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Soybean Oil-Derived Poly-Unsaturated Fatty Acids Enhance Liver Damage in NAFLD Induced by Dietary Cholesterol

While the impact of dietary cholesterol on the progression of atherosclerosis has probably been overestimated, increasing evidence suggests that dietary cholesterol might favor the transition from blunt steatosis to non-alcoholic steatohepatitis (NASH), especially in combination with high fat diets....

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Autores principales: Henkel, Janin, Alfine, Eugenia, Saín, Juliana, Jöhrens, Korinna, Weber, Daniela, Castro, José P., König, Jeannette, Stuhlmann, Christin, Vahrenbrink, Madita, Jonas, Wenke, Kleinridders, André, Püschel, Gerhard P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6164134/
https://www.ncbi.nlm.nih.gov/pubmed/30231595
http://dx.doi.org/10.3390/nu10091326
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author Henkel, Janin
Alfine, Eugenia
Saín, Juliana
Jöhrens, Korinna
Weber, Daniela
Castro, José P.
König, Jeannette
Stuhlmann, Christin
Vahrenbrink, Madita
Jonas, Wenke
Kleinridders, André
Püschel, Gerhard P.
author_facet Henkel, Janin
Alfine, Eugenia
Saín, Juliana
Jöhrens, Korinna
Weber, Daniela
Castro, José P.
König, Jeannette
Stuhlmann, Christin
Vahrenbrink, Madita
Jonas, Wenke
Kleinridders, André
Püschel, Gerhard P.
author_sort Henkel, Janin
collection PubMed
description While the impact of dietary cholesterol on the progression of atherosclerosis has probably been overestimated, increasing evidence suggests that dietary cholesterol might favor the transition from blunt steatosis to non-alcoholic steatohepatitis (NASH), especially in combination with high fat diets. It is poorly understood how cholesterol alone or in combination with other dietary lipid components contributes to the development of lipotoxicity. The current study demonstrated that liver damage caused by dietary cholesterol in mice was strongly enhanced by a high fat diet containing soybean oil-derived ω6-poly-unsaturated fatty acids (ω6-PUFA), but not by a lard-based high fat diet containing mainly saturated fatty acids. In contrast to the lard-based diet the soybean oil-based diet augmented cholesterol accumulation in hepatocytes, presumably by impairing cholesterol-eliminating pathways. The soybean oil-based diet enhanced cholesterol-induced mitochondrial damage and amplified the ensuing oxidative stress, probably by peroxidation of poly-unsaturated fatty acids. This resulted in hepatocyte death, recruitment of inflammatory cells, and fibrosis, and caused a transition from steatosis to NASH, doubling the NASH activity score. Thus, the recommendation to reduce cholesterol intake, in particular in diets rich in ω6-PUFA, although not necessary to reduce the risk of atherosclerosis, might be sensible for patients suffering from non-alcoholic fatty liver disease.
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spelling pubmed-61641342018-10-10 Soybean Oil-Derived Poly-Unsaturated Fatty Acids Enhance Liver Damage in NAFLD Induced by Dietary Cholesterol Henkel, Janin Alfine, Eugenia Saín, Juliana Jöhrens, Korinna Weber, Daniela Castro, José P. König, Jeannette Stuhlmann, Christin Vahrenbrink, Madita Jonas, Wenke Kleinridders, André Püschel, Gerhard P. Nutrients Article While the impact of dietary cholesterol on the progression of atherosclerosis has probably been overestimated, increasing evidence suggests that dietary cholesterol might favor the transition from blunt steatosis to non-alcoholic steatohepatitis (NASH), especially in combination with high fat diets. It is poorly understood how cholesterol alone or in combination with other dietary lipid components contributes to the development of lipotoxicity. The current study demonstrated that liver damage caused by dietary cholesterol in mice was strongly enhanced by a high fat diet containing soybean oil-derived ω6-poly-unsaturated fatty acids (ω6-PUFA), but not by a lard-based high fat diet containing mainly saturated fatty acids. In contrast to the lard-based diet the soybean oil-based diet augmented cholesterol accumulation in hepatocytes, presumably by impairing cholesterol-eliminating pathways. The soybean oil-based diet enhanced cholesterol-induced mitochondrial damage and amplified the ensuing oxidative stress, probably by peroxidation of poly-unsaturated fatty acids. This resulted in hepatocyte death, recruitment of inflammatory cells, and fibrosis, and caused a transition from steatosis to NASH, doubling the NASH activity score. Thus, the recommendation to reduce cholesterol intake, in particular in diets rich in ω6-PUFA, although not necessary to reduce the risk of atherosclerosis, might be sensible for patients suffering from non-alcoholic fatty liver disease. MDPI 2018-09-18 /pmc/articles/PMC6164134/ /pubmed/30231595 http://dx.doi.org/10.3390/nu10091326 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 Article
Henkel, Janin
Alfine, Eugenia
Saín, Juliana
Jöhrens, Korinna
Weber, Daniela
Castro, José P.
König, Jeannette
Stuhlmann, Christin
Vahrenbrink, Madita
Jonas, Wenke
Kleinridders, André
Püschel, Gerhard P.
Soybean Oil-Derived Poly-Unsaturated Fatty Acids Enhance Liver Damage in NAFLD Induced by Dietary Cholesterol
title Soybean Oil-Derived Poly-Unsaturated Fatty Acids Enhance Liver Damage in NAFLD Induced by Dietary Cholesterol
title_full Soybean Oil-Derived Poly-Unsaturated Fatty Acids Enhance Liver Damage in NAFLD Induced by Dietary Cholesterol
title_fullStr Soybean Oil-Derived Poly-Unsaturated Fatty Acids Enhance Liver Damage in NAFLD Induced by Dietary Cholesterol
title_full_unstemmed Soybean Oil-Derived Poly-Unsaturated Fatty Acids Enhance Liver Damage in NAFLD Induced by Dietary Cholesterol
title_short Soybean Oil-Derived Poly-Unsaturated Fatty Acids Enhance Liver Damage in NAFLD Induced by Dietary Cholesterol
title_sort soybean oil-derived poly-unsaturated fatty acids enhance liver damage in nafld induced by dietary cholesterol
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6164134/
https://www.ncbi.nlm.nih.gov/pubmed/30231595
http://dx.doi.org/10.3390/nu10091326
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