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Hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation

BACKGROUND: Mitochondrial succinate accumulation has been suggested as key event for ischemia reperfusion injury in mice. No specific data are however available on behavior of liver mitochondria during ex situ machine perfusion in clinical transplant models. METHODS: We investigated mitochondrial me...

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Autores principales: Schlegel, Andrea, Muller, Xavier, Mueller, Matteo, Stepanova, Anna, Kron, Philipp, de Rougemont, Olivier, Muiesan, Paolo, Clavien, Pierre-Alain, Galkin, Alexander, Meierhofer, David, Dutkowski, Philipp
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7519249/
https://www.ncbi.nlm.nih.gov/pubmed/32979838
http://dx.doi.org/10.1016/j.ebiom.2020.103014
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author Schlegel, Andrea
Muller, Xavier
Mueller, Matteo
Stepanova, Anna
Kron, Philipp
de Rougemont, Olivier
Muiesan, Paolo
Clavien, Pierre-Alain
Galkin, Alexander
Meierhofer, David
Dutkowski, Philipp
author_facet Schlegel, Andrea
Muller, Xavier
Mueller, Matteo
Stepanova, Anna
Kron, Philipp
de Rougemont, Olivier
Muiesan, Paolo
Clavien, Pierre-Alain
Galkin, Alexander
Meierhofer, David
Dutkowski, Philipp
author_sort Schlegel, Andrea
collection PubMed
description BACKGROUND: Mitochondrial succinate accumulation has been suggested as key event for ischemia reperfusion injury in mice. No specific data are however available on behavior of liver mitochondria during ex situ machine perfusion in clinical transplant models. METHODS: We investigated mitochondrial metabolism of isolated perfused rat livers before transplantation. Livers were exposed to warm and cold ischemia to simulate donation after circulatory death (DCD) and organ transport. Subsequently, livers were perfused with oxygenated Belzer-MPS for 1h, at hypothermic or normothermic conditions. Various experiments were performed with supplemented succinate and/or mitochondrial inhibitors. The perfusate, liver tissues, and isolated mitochondria were analyzed by mass-spectroscopy and fluorimetry. Additionally, rat DCD livers were transplanted after 1h hypothermic or normothermic oxygenated perfusion. In parallel, perfusate samples were analysed during HOPE-treatment of human DCD livers before transplantation. FINDINGS: Succinate exposure during rat liver perfusion triggered a dose-dependent release of mitochondrial Flavin-Mononucleotide (FMN) and NADH in perfusates under normothermic conditions. In contrast, perfusate FMN was 3-8 fold lower under hypothermic conditions, suggesting less mitochondrial injury during cold re-oxygenation compared to normothermic conditions. HOPE-treatment induced a mitochondrial reprogramming with uploading of the nucleotide pool and effective succinate metabolism. This resulted in a clear superiority after liver transplantation compared to normothermic perfusion. Finally, the degree of mitochondrial injury during HOPE of human DCD livers, quantified by perfusate FMN and NADH, was predictive for liver function. INTERPRETATION: Mitochondrial injury determines outcome of transplanted rodent and human livers. Hypothermic oxygenated perfusion improves mitochondrial function, and allows viability assessment of liver grafts before implantation. FUNDING: detailed information can be found in Acknowledgments.
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spelling pubmed-75192492020-09-30 Hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation Schlegel, Andrea Muller, Xavier Mueller, Matteo Stepanova, Anna Kron, Philipp de Rougemont, Olivier Muiesan, Paolo Clavien, Pierre-Alain Galkin, Alexander Meierhofer, David Dutkowski, Philipp EBioMedicine Research Paper BACKGROUND: Mitochondrial succinate accumulation has been suggested as key event for ischemia reperfusion injury in mice. No specific data are however available on behavior of liver mitochondria during ex situ machine perfusion in clinical transplant models. METHODS: We investigated mitochondrial metabolism of isolated perfused rat livers before transplantation. Livers were exposed to warm and cold ischemia to simulate donation after circulatory death (DCD) and organ transport. Subsequently, livers were perfused with oxygenated Belzer-MPS for 1h, at hypothermic or normothermic conditions. Various experiments were performed with supplemented succinate and/or mitochondrial inhibitors. The perfusate, liver tissues, and isolated mitochondria were analyzed by mass-spectroscopy and fluorimetry. Additionally, rat DCD livers were transplanted after 1h hypothermic or normothermic oxygenated perfusion. In parallel, perfusate samples were analysed during HOPE-treatment of human DCD livers before transplantation. FINDINGS: Succinate exposure during rat liver perfusion triggered a dose-dependent release of mitochondrial Flavin-Mononucleotide (FMN) and NADH in perfusates under normothermic conditions. In contrast, perfusate FMN was 3-8 fold lower under hypothermic conditions, suggesting less mitochondrial injury during cold re-oxygenation compared to normothermic conditions. HOPE-treatment induced a mitochondrial reprogramming with uploading of the nucleotide pool and effective succinate metabolism. This resulted in a clear superiority after liver transplantation compared to normothermic perfusion. Finally, the degree of mitochondrial injury during HOPE of human DCD livers, quantified by perfusate FMN and NADH, was predictive for liver function. INTERPRETATION: Mitochondrial injury determines outcome of transplanted rodent and human livers. Hypothermic oxygenated perfusion improves mitochondrial function, and allows viability assessment of liver grafts before implantation. FUNDING: detailed information can be found in Acknowledgments. Elsevier 2020-09-24 /pmc/articles/PMC7519249/ /pubmed/32979838 http://dx.doi.org/10.1016/j.ebiom.2020.103014 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Schlegel, Andrea
Muller, Xavier
Mueller, Matteo
Stepanova, Anna
Kron, Philipp
de Rougemont, Olivier
Muiesan, Paolo
Clavien, Pierre-Alain
Galkin, Alexander
Meierhofer, David
Dutkowski, Philipp
Hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation
title Hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation
title_full Hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation
title_fullStr Hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation
title_full_unstemmed Hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation
title_short Hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation
title_sort hypothermic oxygenated perfusion protects from mitochondrial injury before liver transplantation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7519249/
https://www.ncbi.nlm.nih.gov/pubmed/32979838
http://dx.doi.org/10.1016/j.ebiom.2020.103014
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