Cargando…
5-aminolevulinate and CHIL3/CHI3L1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury
Rationale: Liver resection and transplantation surgeries are accompanied by hepatic ischemia-reperfusion (HIR) injury that hampers the subsequent liver recovery. Given that the liver is the main organ for metabolism and detoxification, ischemia-reperfusion in essence bestows metabolic stress upon th...
Autores principales: | , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Ivyspring International Publisher
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10526663/ https://www.ncbi.nlm.nih.gov/pubmed/37771779 http://dx.doi.org/10.7150/thno.83163 |
_version_ | 1785111050260054016 |
---|---|
author | Jin, Guanghui Guo, Na Liu, Yasong Zhang, Lele Chen, Liang Dong, Tao Liu, Wei Zhang, Xiaomei Jiang, Yong Lv, Guo Zhao, Fei Liu, Wei Hei, Ziqing Yang, Yang Ou, Jingxing |
author_facet | Jin, Guanghui Guo, Na Liu, Yasong Zhang, Lele Chen, Liang Dong, Tao Liu, Wei Zhang, Xiaomei Jiang, Yong Lv, Guo Zhao, Fei Liu, Wei Hei, Ziqing Yang, Yang Ou, Jingxing |
author_sort | Jin, Guanghui |
collection | PubMed |
description | Rationale: Liver resection and transplantation surgeries are accompanied by hepatic ischemia-reperfusion (HIR) injury that hampers the subsequent liver recovery. Given that the liver is the main organ for metabolism and detoxification, ischemia-reperfusion in essence bestows metabolic stress upon the liver and disrupts local metabolic and immune homeostasis. Most of the recent and current research works concerning HIR have been focusing on addressing HIR-induced hepatic injury and inflammation, instead of dealing with the metabolic reprogramming and restoration of redox homeostasis. As our previous work uncovers the importance of 5-aminolevulinate (5-ALA) synthesis during stress adaptation, here we evaluate the effects of supplementing 5-ALA to mitigate HIR injury. Methods: 5-ALA was supplemented into the mice or cultured cells during the ischemic or oxygen-glucose deprivation (OGD) phase. Following reperfusion or reoxygenation, cellular metabolism and energy homeostasis, mitochondrial production of reactive oxygen species (ROS) and transcriptomic changes were evaluated in HIR mouse models or cultured hepatocytes and macrophages. Liver injury, hepatocytic functional tests, and macrophagic M1/M2 polarization were assessed. Results: Dynamic changes in the expression of key enzymes in 5-ALA metabolism were first confirmed in donor and mouse liver samples following HIR. Supplemented 5-ALA modulated mouse hepatic lipid metabolism and reduced ATP production in macrophages following HIR, resulting in elevation of anti-inflammatory M2 polarization. Mechanistically, 5-ALA down-regulates macrophagic chemokine receptor CX3CR1 via the repression of RelA following OGD and reoxygenation (OGD/R). Cx3cr1 KO mice demonstrated milder liver injuries and more macrophage M2 polarization after HIR. M2 macrophage-secreted chitinase-like protein 3 (CHIL3; CHI3L1 in human) is an important HIR-induced effector downstream of CX3CR1 deficiency. Addition of CHIL3/CHI3L1 alone improved hepatocellular metabolism and reduced OGD/R-inflicted injuries in cultured mouse and human hepatocytes. Combined treatment with 5-ALA and CHIL3 during the ischemic phase facilitated lipid metabolism and ATP production in the mouse liver following HIR. Conclusion: Our results reveal that supplementing 5-ALA promotes macrophagic M2 polarization via downregulation of RelA and CX3CR1 in mice following HIR, while M2 macrophage-produced CHIL3/CHI3L1 also manifests beneficial effects to the recovery of hepatic metabolism. 5-ALA and CHIL3/CHI3L1 together mitigate HIR-induced mitochondrial dysfunction and hepatocellular injuries, which may be developed into safe and effective clinical treatments to attenuate HIR injuries. |
format | Online Article Text |
id | pubmed-10526663 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Ivyspring International Publisher |
record_format | MEDLINE/PubMed |
spelling | pubmed-105266632023-09-28 5-aminolevulinate and CHIL3/CHI3L1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury Jin, Guanghui Guo, Na Liu, Yasong Zhang, Lele Chen, Liang Dong, Tao Liu, Wei Zhang, Xiaomei Jiang, Yong Lv, Guo Zhao, Fei Liu, Wei Hei, Ziqing Yang, Yang Ou, Jingxing Theranostics Research Paper Rationale: Liver resection and transplantation surgeries are accompanied by hepatic ischemia-reperfusion (HIR) injury that hampers the subsequent liver recovery. Given that the liver is the main organ for metabolism and detoxification, ischemia-reperfusion in essence bestows metabolic stress upon the liver and disrupts local metabolic and immune homeostasis. Most of the recent and current research works concerning HIR have been focusing on addressing HIR-induced hepatic injury and inflammation, instead of dealing with the metabolic reprogramming and restoration of redox homeostasis. As our previous work uncovers the importance of 5-aminolevulinate (5-ALA) synthesis during stress adaptation, here we evaluate the effects of supplementing 5-ALA to mitigate HIR injury. Methods: 5-ALA was supplemented into the mice or cultured cells during the ischemic or oxygen-glucose deprivation (OGD) phase. Following reperfusion or reoxygenation, cellular metabolism and energy homeostasis, mitochondrial production of reactive oxygen species (ROS) and transcriptomic changes were evaluated in HIR mouse models or cultured hepatocytes and macrophages. Liver injury, hepatocytic functional tests, and macrophagic M1/M2 polarization were assessed. Results: Dynamic changes in the expression of key enzymes in 5-ALA metabolism were first confirmed in donor and mouse liver samples following HIR. Supplemented 5-ALA modulated mouse hepatic lipid metabolism and reduced ATP production in macrophages following HIR, resulting in elevation of anti-inflammatory M2 polarization. Mechanistically, 5-ALA down-regulates macrophagic chemokine receptor CX3CR1 via the repression of RelA following OGD and reoxygenation (OGD/R). Cx3cr1 KO mice demonstrated milder liver injuries and more macrophage M2 polarization after HIR. M2 macrophage-secreted chitinase-like protein 3 (CHIL3; CHI3L1 in human) is an important HIR-induced effector downstream of CX3CR1 deficiency. Addition of CHIL3/CHI3L1 alone improved hepatocellular metabolism and reduced OGD/R-inflicted injuries in cultured mouse and human hepatocytes. Combined treatment with 5-ALA and CHIL3 during the ischemic phase facilitated lipid metabolism and ATP production in the mouse liver following HIR. Conclusion: Our results reveal that supplementing 5-ALA promotes macrophagic M2 polarization via downregulation of RelA and CX3CR1 in mice following HIR, while M2 macrophage-produced CHIL3/CHI3L1 also manifests beneficial effects to the recovery of hepatic metabolism. 5-ALA and CHIL3/CHI3L1 together mitigate HIR-induced mitochondrial dysfunction and hepatocellular injuries, which may be developed into safe and effective clinical treatments to attenuate HIR injuries. Ivyspring International Publisher 2023-08-28 /pmc/articles/PMC10526663/ /pubmed/37771779 http://dx.doi.org/10.7150/thno.83163 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions. |
spellingShingle | Research Paper Jin, Guanghui Guo, Na Liu, Yasong Zhang, Lele Chen, Liang Dong, Tao Liu, Wei Zhang, Xiaomei Jiang, Yong Lv, Guo Zhao, Fei Liu, Wei Hei, Ziqing Yang, Yang Ou, Jingxing 5-aminolevulinate and CHIL3/CHI3L1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury |
title | 5-aminolevulinate and CHIL3/CHI3L1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury |
title_full | 5-aminolevulinate and CHIL3/CHI3L1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury |
title_fullStr | 5-aminolevulinate and CHIL3/CHI3L1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury |
title_full_unstemmed | 5-aminolevulinate and CHIL3/CHI3L1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury |
title_short | 5-aminolevulinate and CHIL3/CHI3L1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury |
title_sort | 5-aminolevulinate and chil3/chi3l1 treatment amid ischemia aids liver metabolism and reduces ischemia-reperfusion injury |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10526663/ https://www.ncbi.nlm.nih.gov/pubmed/37771779 http://dx.doi.org/10.7150/thno.83163 |
work_keys_str_mv | AT jinguanghui 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT guona 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT liuyasong 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT zhanglele 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT chenliang 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT dongtao 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT liuwei 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT zhangxiaomei 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT jiangyong 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT lvguo 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT zhaofei 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT liuwei 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT heiziqing 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT yangyang 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury AT oujingxing 5aminolevulinateandchil3chi3l1treatmentamidischemiaaidslivermetabolismandreducesischemiareperfusioninjury |