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Differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant HepaRG cells

Bile acids (BAs) are recognised as the causative agents of toxicity in drug-induced cholestasis (DIC). Research in isolated mitochondria and HepG2 cells have demonstrated BA-mediated mitochondrial dysfunction as a key mechanism of toxicity in DIC. However, HepG2 cells are of limited suitability for...

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Autores principales: Penman, Sophie L., Sharma, Parveen, Aerts, Hélène, Park, B. Kevin, Weaver, Richard J., Chadwick, Amy E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pergamon Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6853172/
https://www.ncbi.nlm.nih.gov/pubmed/31288073
http://dx.doi.org/10.1016/j.tiv.2019.104595
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author Penman, Sophie L.
Sharma, Parveen
Aerts, Hélène
Park, B. Kevin
Weaver, Richard J.
Chadwick, Amy E.
author_facet Penman, Sophie L.
Sharma, Parveen
Aerts, Hélène
Park, B. Kevin
Weaver, Richard J.
Chadwick, Amy E.
author_sort Penman, Sophie L.
collection PubMed
description Bile acids (BAs) are recognised as the causative agents of toxicity in drug-induced cholestasis (DIC). Research in isolated mitochondria and HepG2 cells have demonstrated BA-mediated mitochondrial dysfunction as a key mechanism of toxicity in DIC. However, HepG2 cells are of limited suitability for DIC studies as they do not express the necessary physiological characteristics. In this study, the mitotoxic potentials of BA mixtures were assessed in isolated mitochondria and a better-suited hepatic model, HepaRG cells. BAs induced structural alterations and a loss of mitochondrial membrane potential (MMP) in isolated mitochondria however, this toxicity did not translate to HepaRG cells. There were no changes in oxygen consumption rate, MMP or ATP levels in glucose and galactose media, indicating that there was no direct mitochondrial toxicity mediated via electron transport chain dysfunction in HepaRG cells. Assessment of key biliary transporters revealed that there was a time-dependent reduction in the expression and activity of multi-drug resistance protein 2 (MRP2), which was consistent with the induction of cytotoxicity in HepaRG cells. Overall, the findings from this study have demonstrated that mitochondrial dysfunction is not a mechanism of BA-induced toxicity in HepaRG cells.
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spelling pubmed-68531722019-12-01 Differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant HepaRG cells Penman, Sophie L. Sharma, Parveen Aerts, Hélène Park, B. Kevin Weaver, Richard J. Chadwick, Amy E. Toxicol In Vitro Article Bile acids (BAs) are recognised as the causative agents of toxicity in drug-induced cholestasis (DIC). Research in isolated mitochondria and HepG2 cells have demonstrated BA-mediated mitochondrial dysfunction as a key mechanism of toxicity in DIC. However, HepG2 cells are of limited suitability for DIC studies as they do not express the necessary physiological characteristics. In this study, the mitotoxic potentials of BA mixtures were assessed in isolated mitochondria and a better-suited hepatic model, HepaRG cells. BAs induced structural alterations and a loss of mitochondrial membrane potential (MMP) in isolated mitochondria however, this toxicity did not translate to HepaRG cells. There were no changes in oxygen consumption rate, MMP or ATP levels in glucose and galactose media, indicating that there was no direct mitochondrial toxicity mediated via electron transport chain dysfunction in HepaRG cells. Assessment of key biliary transporters revealed that there was a time-dependent reduction in the expression and activity of multi-drug resistance protein 2 (MRP2), which was consistent with the induction of cytotoxicity in HepaRG cells. Overall, the findings from this study have demonstrated that mitochondrial dysfunction is not a mechanism of BA-induced toxicity in HepaRG cells. Pergamon Press 2019-12 /pmc/articles/PMC6853172/ /pubmed/31288073 http://dx.doi.org/10.1016/j.tiv.2019.104595 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Penman, Sophie L.
Sharma, Parveen
Aerts, Hélène
Park, B. Kevin
Weaver, Richard J.
Chadwick, Amy E.
Differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant HepaRG cells
title Differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant HepaRG cells
title_full Differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant HepaRG cells
title_fullStr Differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant HepaRG cells
title_full_unstemmed Differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant HepaRG cells
title_short Differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant HepaRG cells
title_sort differential toxic effects of bile acid mixtures in isolated mitochondria and physiologically relevant heparg cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6853172/
https://www.ncbi.nlm.nih.gov/pubmed/31288073
http://dx.doi.org/10.1016/j.tiv.2019.104595
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