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Absence of Bsep/Abcb11 attenuates MCD diet‐induced hepatic steatosis but aggravates inflammation in mice

BACKGROUND: Bile acids (BAs) regulate hepatic lipid metabolism and inflammation. Bile salt export pump (BSEP) KO mice are metabolically preconditioned with a hydrophilic BA composition protecting them from cholestasis. We hypothesize that changes in hepatic BA profile and subsequent changes in BA si...

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Autores principales: Fuchs, Claudia D., Krivanec, Sebastian, Steinacher, Daniel, Mlitz, Veronika, Wahlström, Annika, Stahlman, Marcus, Claudel, Thierry, Scharnagl, Hubert, Stojakovic, Tatjana, Marschall, Hanns‐Ulrich, Trauner, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7317533/
https://www.ncbi.nlm.nih.gov/pubmed/32141703
http://dx.doi.org/10.1111/liv.14423
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author Fuchs, Claudia D.
Krivanec, Sebastian
Steinacher, Daniel
Mlitz, Veronika
Wahlström, Annika
Stahlman, Marcus
Claudel, Thierry
Scharnagl, Hubert
Stojakovic, Tatjana
Marschall, Hanns‐Ulrich
Trauner, Michael
author_facet Fuchs, Claudia D.
Krivanec, Sebastian
Steinacher, Daniel
Mlitz, Veronika
Wahlström, Annika
Stahlman, Marcus
Claudel, Thierry
Scharnagl, Hubert
Stojakovic, Tatjana
Marschall, Hanns‐Ulrich
Trauner, Michael
author_sort Fuchs, Claudia D.
collection PubMed
description BACKGROUND: Bile acids (BAs) regulate hepatic lipid metabolism and inflammation. Bile salt export pump (BSEP) KO mice are metabolically preconditioned with a hydrophilic BA composition protecting them from cholestasis. We hypothesize that changes in hepatic BA profile and subsequent changes in BA signalling may critically determine the susceptibility to steatohepatitis. METHODS: Wild‐type (WT) and BSEP KO mice were challenged with methionine choline‐deficient (MCD) diet to induce steatohepatitis. Serum biochemistry, lipid profiling as well as intestinal lipid absorption were assessed. Markers of inflammation, fibrosis, lipid and BA metabolism were analysed. Hepatic and faecal BA profile as well as serum levels of the BA synthesis intermediate 7‐hydroxy‐4‐cholesten‐3‐one (C4) were also investigated. RESULTS: Bile salt export pump KO MCD‐fed mice developed less steatosis but more inflammation than WT mice. Intestinal neutral lipid levels were reduced in BSEP KO mice at baseline and under MCD conditions. Faecal non‐esterified fatty acid concentrations at baseline and under MCD diet were markedly elevated in BSEP KO compared to WT mice. Serum liver enzymes and hepatic expression of inflammatory markers were increased in MCD‐fed BSEP KO animals. PPARα protein levels were reduced in BSEP KO mice. Accordingly, PPARα downstream targets Fabp1 and Fatp5 were repressed, while NFκB subunits were increased in MCD‐fed BSEP KO mice. Farnesoid X receptor (FXR) protein levels were reduced in MCD‐fed BSEP KO vs WT mice. Hepatic BA profile revealed elevated levels of TβMCA, exerting FXR antagonistic action, while concentrations of TCA (FXR agonistic function) were reduced. CONCLUSION: Presence of hydroxylated BAs result in increased faecal FA excretion and reduced hepatic lipid accumulation. This aggravates development of MCD diet‐induced hepatitis potentially by decreasing FXR and PPARα signalling.
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spelling pubmed-73175332020-06-29 Absence of Bsep/Abcb11 attenuates MCD diet‐induced hepatic steatosis but aggravates inflammation in mice Fuchs, Claudia D. Krivanec, Sebastian Steinacher, Daniel Mlitz, Veronika Wahlström, Annika Stahlman, Marcus Claudel, Thierry Scharnagl, Hubert Stojakovic, Tatjana Marschall, Hanns‐Ulrich Trauner, Michael Liver Int Metabolic & Toxic Liver Diseases BACKGROUND: Bile acids (BAs) regulate hepatic lipid metabolism and inflammation. Bile salt export pump (BSEP) KO mice are metabolically preconditioned with a hydrophilic BA composition protecting them from cholestasis. We hypothesize that changes in hepatic BA profile and subsequent changes in BA signalling may critically determine the susceptibility to steatohepatitis. METHODS: Wild‐type (WT) and BSEP KO mice were challenged with methionine choline‐deficient (MCD) diet to induce steatohepatitis. Serum biochemistry, lipid profiling as well as intestinal lipid absorption were assessed. Markers of inflammation, fibrosis, lipid and BA metabolism were analysed. Hepatic and faecal BA profile as well as serum levels of the BA synthesis intermediate 7‐hydroxy‐4‐cholesten‐3‐one (C4) were also investigated. RESULTS: Bile salt export pump KO MCD‐fed mice developed less steatosis but more inflammation than WT mice. Intestinal neutral lipid levels were reduced in BSEP KO mice at baseline and under MCD conditions. Faecal non‐esterified fatty acid concentrations at baseline and under MCD diet were markedly elevated in BSEP KO compared to WT mice. Serum liver enzymes and hepatic expression of inflammatory markers were increased in MCD‐fed BSEP KO animals. PPARα protein levels were reduced in BSEP KO mice. Accordingly, PPARα downstream targets Fabp1 and Fatp5 were repressed, while NFκB subunits were increased in MCD‐fed BSEP KO mice. Farnesoid X receptor (FXR) protein levels were reduced in MCD‐fed BSEP KO vs WT mice. Hepatic BA profile revealed elevated levels of TβMCA, exerting FXR antagonistic action, while concentrations of TCA (FXR agonistic function) were reduced. CONCLUSION: Presence of hydroxylated BAs result in increased faecal FA excretion and reduced hepatic lipid accumulation. This aggravates development of MCD diet‐induced hepatitis potentially by decreasing FXR and PPARα signalling. John Wiley and Sons Inc. 2020-03-18 2020-06 /pmc/articles/PMC7317533/ /pubmed/32141703 http://dx.doi.org/10.1111/liv.14423 Text en © 2020 The Authors. Liver International published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Metabolic & Toxic Liver Diseases
Fuchs, Claudia D.
Krivanec, Sebastian
Steinacher, Daniel
Mlitz, Veronika
Wahlström, Annika
Stahlman, Marcus
Claudel, Thierry
Scharnagl, Hubert
Stojakovic, Tatjana
Marschall, Hanns‐Ulrich
Trauner, Michael
Absence of Bsep/Abcb11 attenuates MCD diet‐induced hepatic steatosis but aggravates inflammation in mice
title Absence of Bsep/Abcb11 attenuates MCD diet‐induced hepatic steatosis but aggravates inflammation in mice
title_full Absence of Bsep/Abcb11 attenuates MCD diet‐induced hepatic steatosis but aggravates inflammation in mice
title_fullStr Absence of Bsep/Abcb11 attenuates MCD diet‐induced hepatic steatosis but aggravates inflammation in mice
title_full_unstemmed Absence of Bsep/Abcb11 attenuates MCD diet‐induced hepatic steatosis but aggravates inflammation in mice
title_short Absence of Bsep/Abcb11 attenuates MCD diet‐induced hepatic steatosis but aggravates inflammation in mice
title_sort absence of bsep/abcb11 attenuates mcd diet‐induced hepatic steatosis but aggravates inflammation in mice
topic Metabolic & Toxic Liver Diseases
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7317533/
https://www.ncbi.nlm.nih.gov/pubmed/32141703
http://dx.doi.org/10.1111/liv.14423
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