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Hypothermic Oxygenated Machine Perfusion Promotes Mitophagy Flux against Hypoxia-Ischemic Injury in Rat DCD Liver

Hypothermic oxygenated machine perfusion (HOPE) can enhance organ preservation and protect mitochondria from hypoxia-ischemic injury; however, an understanding of the underlying HOPE mechanism that protects mitochondria is somewhat lacking. We hypothesized that mitophagy may play an important role i...

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Autores principales: Luo, Jia, Hu, Yiqing, Qiao, Yinbiao, Li, Haoyu, Huang, Jiacheng, Xu, Kangdi, Jiang, Li, Wu, Hao, Hu, Xiaoyi, Jia, Junjun, Zhou, Lin, Xie, Haiyang, Li, Jianhui, Zheng, Shusen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10049087/
https://www.ncbi.nlm.nih.gov/pubmed/36982476
http://dx.doi.org/10.3390/ijms24065403
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author Luo, Jia
Hu, Yiqing
Qiao, Yinbiao
Li, Haoyu
Huang, Jiacheng
Xu, Kangdi
Jiang, Li
Wu, Hao
Hu, Xiaoyi
Jia, Junjun
Zhou, Lin
Xie, Haiyang
Li, Jianhui
Zheng, Shusen
author_facet Luo, Jia
Hu, Yiqing
Qiao, Yinbiao
Li, Haoyu
Huang, Jiacheng
Xu, Kangdi
Jiang, Li
Wu, Hao
Hu, Xiaoyi
Jia, Junjun
Zhou, Lin
Xie, Haiyang
Li, Jianhui
Zheng, Shusen
author_sort Luo, Jia
collection PubMed
description Hypothermic oxygenated machine perfusion (HOPE) can enhance organ preservation and protect mitochondria from hypoxia-ischemic injury; however, an understanding of the underlying HOPE mechanism that protects mitochondria is somewhat lacking. We hypothesized that mitophagy may play an important role in HOPE mitochondria protection. Experimental rat liver grafts were exposed to 30 min of in situ warm ischemia. Then, grafts were procured, followed by cold storage for 3 or 4 h to mimic the conventional preservation and transportation time in donation after circulatory death (DCD) in clinical contexts. Next, the grafts underwent hypothermic machine perfusion (HMP) or HOPE for 1 h through portal vein only perfusion. The HOPE-treated group showed a better preservation capacity compared with cold storage and HMP, preventing hepatocyte damage, nuclear injury, and cell death. HOPE can increase mitophagy marker expression, promote mitophagy flux via the PINK1/Parkin pathway to maintain mitochondrial function, and reduce oxygen free radical generation, while the inhibition of autophagy by 3-methyladenine and chloroquine could reverse the protective effect. HOPE-treated DCD liver also demonstrated more changes in the expression of genes responsible for bile metabolism, mitochondrial dynamics, cell survival, and oxidative stress. Overall, HOPE attenuates hypoxia-ischemic injury in DCD liver by promoting mitophagy flux to maintain mitochondrial function and protect hepatocytes. Mitophagy could pave the way for a protective approach against hypoxia-ischemic injury in DCD liver.
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spelling pubmed-100490872023-03-29 Hypothermic Oxygenated Machine Perfusion Promotes Mitophagy Flux against Hypoxia-Ischemic Injury in Rat DCD Liver Luo, Jia Hu, Yiqing Qiao, Yinbiao Li, Haoyu Huang, Jiacheng Xu, Kangdi Jiang, Li Wu, Hao Hu, Xiaoyi Jia, Junjun Zhou, Lin Xie, Haiyang Li, Jianhui Zheng, Shusen Int J Mol Sci Article Hypothermic oxygenated machine perfusion (HOPE) can enhance organ preservation and protect mitochondria from hypoxia-ischemic injury; however, an understanding of the underlying HOPE mechanism that protects mitochondria is somewhat lacking. We hypothesized that mitophagy may play an important role in HOPE mitochondria protection. Experimental rat liver grafts were exposed to 30 min of in situ warm ischemia. Then, grafts were procured, followed by cold storage for 3 or 4 h to mimic the conventional preservation and transportation time in donation after circulatory death (DCD) in clinical contexts. Next, the grafts underwent hypothermic machine perfusion (HMP) or HOPE for 1 h through portal vein only perfusion. The HOPE-treated group showed a better preservation capacity compared with cold storage and HMP, preventing hepatocyte damage, nuclear injury, and cell death. HOPE can increase mitophagy marker expression, promote mitophagy flux via the PINK1/Parkin pathway to maintain mitochondrial function, and reduce oxygen free radical generation, while the inhibition of autophagy by 3-methyladenine and chloroquine could reverse the protective effect. HOPE-treated DCD liver also demonstrated more changes in the expression of genes responsible for bile metabolism, mitochondrial dynamics, cell survival, and oxidative stress. Overall, HOPE attenuates hypoxia-ischemic injury in DCD liver by promoting mitophagy flux to maintain mitochondrial function and protect hepatocytes. Mitophagy could pave the way for a protective approach against hypoxia-ischemic injury in DCD liver. MDPI 2023-03-11 /pmc/articles/PMC10049087/ /pubmed/36982476 http://dx.doi.org/10.3390/ijms24065403 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Luo, Jia
Hu, Yiqing
Qiao, Yinbiao
Li, Haoyu
Huang, Jiacheng
Xu, Kangdi
Jiang, Li
Wu, Hao
Hu, Xiaoyi
Jia, Junjun
Zhou, Lin
Xie, Haiyang
Li, Jianhui
Zheng, Shusen
Hypothermic Oxygenated Machine Perfusion Promotes Mitophagy Flux against Hypoxia-Ischemic Injury in Rat DCD Liver
title Hypothermic Oxygenated Machine Perfusion Promotes Mitophagy Flux against Hypoxia-Ischemic Injury in Rat DCD Liver
title_full Hypothermic Oxygenated Machine Perfusion Promotes Mitophagy Flux against Hypoxia-Ischemic Injury in Rat DCD Liver
title_fullStr Hypothermic Oxygenated Machine Perfusion Promotes Mitophagy Flux against Hypoxia-Ischemic Injury in Rat DCD Liver
title_full_unstemmed Hypothermic Oxygenated Machine Perfusion Promotes Mitophagy Flux against Hypoxia-Ischemic Injury in Rat DCD Liver
title_short Hypothermic Oxygenated Machine Perfusion Promotes Mitophagy Flux against Hypoxia-Ischemic Injury in Rat DCD Liver
title_sort hypothermic oxygenated machine perfusion promotes mitophagy flux against hypoxia-ischemic injury in rat dcd liver
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10049087/
https://www.ncbi.nlm.nih.gov/pubmed/36982476
http://dx.doi.org/10.3390/ijms24065403
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