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Hepatic Effects of Pharmacological Doses of Hydroxy-Cobalamin[c-lactam] in Mice

The vitamin B(12) analog hydroxy-cobalamin[c-lactam] (HCCL) impairs hepatic mitochondrial protein synthesis and function of the electron transport chain in rats. We aimed to establish an in vivo model for mitochondrial dysfunction in mice, which could be used to investigate hepatotoxicity of mitocho...

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Autores principales: Haegler, Patrizia, Grünig, David, Berger, Benjamin, Terracciano, Luigi, Krähenbühl, Stephan, Bouitbir, Jamal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5279765/
https://www.ncbi.nlm.nih.gov/pubmed/28135329
http://dx.doi.org/10.1371/journal.pone.0171026
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author Haegler, Patrizia
Grünig, David
Berger, Benjamin
Terracciano, Luigi
Krähenbühl, Stephan
Bouitbir, Jamal
author_facet Haegler, Patrizia
Grünig, David
Berger, Benjamin
Terracciano, Luigi
Krähenbühl, Stephan
Bouitbir, Jamal
author_sort Haegler, Patrizia
collection PubMed
description The vitamin B(12) analog hydroxy-cobalamin[c-lactam] (HCCL) impairs hepatic mitochondrial protein synthesis and function of the electron transport chain in rats. We aimed to establish an in vivo model for mitochondrial dysfunction in mice, which could be used to investigate hepatotoxicity of mitochondrial toxicants. In a first step, we performed a dose-finding study in mice treated with HCCL 0.4 mg/kg and 4 mg/kg i.p. for two to four weeks. The plasma methylmalonate concentration was strongly increased at 4 mg/kg starting at three weeks of treatment. We subsequently treated mice daily with 4 mg/kg HCCL i.p. for three weeks and characterized liver function and histology as well as liver mitochondrial function. We found an increase in liver weight in HCCL-treated mice, which was paralleled by hepatocellular accumulation of triglycerides. In liver homogenate of HCCL-treated mice, the complex I activity of the electron transport chain was reduced, most likely explaining hepatocellular triglyceride accumulation. The activity of CPT1 was not affected by methylmalonyl-CoA in isolated liver mitochondria. Despite impaired complex I activity, mitochondrial superoxide anion production was not increased and the hepatocellular glutathione (GSH) pool was maintained. Finally, the mitochondrial DNA content was not altered with HCCL treatment. In conclusion, treatment of mice with HCCL is associated with increased liver weight explained by hepatocellular triglyceride accumulation. Hepatocellular fat accumulation is most likely a consequence of impaired activity of the mitochondrial electron transport chain. The impairment of complex I activity is not strong enough to result in ROS accumulation and reduction of the GSH stores.
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spelling pubmed-52797652017-02-17 Hepatic Effects of Pharmacological Doses of Hydroxy-Cobalamin[c-lactam] in Mice Haegler, Patrizia Grünig, David Berger, Benjamin Terracciano, Luigi Krähenbühl, Stephan Bouitbir, Jamal PLoS One Research Article The vitamin B(12) analog hydroxy-cobalamin[c-lactam] (HCCL) impairs hepatic mitochondrial protein synthesis and function of the electron transport chain in rats. We aimed to establish an in vivo model for mitochondrial dysfunction in mice, which could be used to investigate hepatotoxicity of mitochondrial toxicants. In a first step, we performed a dose-finding study in mice treated with HCCL 0.4 mg/kg and 4 mg/kg i.p. for two to four weeks. The plasma methylmalonate concentration was strongly increased at 4 mg/kg starting at three weeks of treatment. We subsequently treated mice daily with 4 mg/kg HCCL i.p. for three weeks and characterized liver function and histology as well as liver mitochondrial function. We found an increase in liver weight in HCCL-treated mice, which was paralleled by hepatocellular accumulation of triglycerides. In liver homogenate of HCCL-treated mice, the complex I activity of the electron transport chain was reduced, most likely explaining hepatocellular triglyceride accumulation. The activity of CPT1 was not affected by methylmalonyl-CoA in isolated liver mitochondria. Despite impaired complex I activity, mitochondrial superoxide anion production was not increased and the hepatocellular glutathione (GSH) pool was maintained. Finally, the mitochondrial DNA content was not altered with HCCL treatment. In conclusion, treatment of mice with HCCL is associated with increased liver weight explained by hepatocellular triglyceride accumulation. Hepatocellular fat accumulation is most likely a consequence of impaired activity of the mitochondrial electron transport chain. The impairment of complex I activity is not strong enough to result in ROS accumulation and reduction of the GSH stores. Public Library of Science 2017-01-30 /pmc/articles/PMC5279765/ /pubmed/28135329 http://dx.doi.org/10.1371/journal.pone.0171026 Text en © 2017 Haegler et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Haegler, Patrizia
Grünig, David
Berger, Benjamin
Terracciano, Luigi
Krähenbühl, Stephan
Bouitbir, Jamal
Hepatic Effects of Pharmacological Doses of Hydroxy-Cobalamin[c-lactam] in Mice
title Hepatic Effects of Pharmacological Doses of Hydroxy-Cobalamin[c-lactam] in Mice
title_full Hepatic Effects of Pharmacological Doses of Hydroxy-Cobalamin[c-lactam] in Mice
title_fullStr Hepatic Effects of Pharmacological Doses of Hydroxy-Cobalamin[c-lactam] in Mice
title_full_unstemmed Hepatic Effects of Pharmacological Doses of Hydroxy-Cobalamin[c-lactam] in Mice
title_short Hepatic Effects of Pharmacological Doses of Hydroxy-Cobalamin[c-lactam] in Mice
title_sort hepatic effects of pharmacological doses of hydroxy-cobalamin[c-lactam] in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5279765/
https://www.ncbi.nlm.nih.gov/pubmed/28135329
http://dx.doi.org/10.1371/journal.pone.0171026
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