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Neutrophil CEACAM1 determines susceptibility to NETosis by regulating the S1PR2/S1PR3 axis in liver transplantation

Neutrophils, the largest innate immune cell population in humans, are the primary proinflammatory sentinel in the ischemia-reperfusion injury (IRI) mechanism in orthotopic liver transplantation (OLT). Carcinoembryonic antigen–related cell adhesion molecule 1 (CEACAM1, CC1, or CD66a) is essential in...

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Autores principales: Hirao, Hirofumi, Kojima, Hidenobu, Dery, Kenneth J., Nakamura, Kojiro, Kadono, Kentaro, Zhai, Yuan, Farmer, Douglas G., Kaldas, Fady M., Kupiec-Weglinski, Jerzy W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9888387/
https://www.ncbi.nlm.nih.gov/pubmed/36719377
http://dx.doi.org/10.1172/JCI162940
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author Hirao, Hirofumi
Kojima, Hidenobu
Dery, Kenneth J.
Nakamura, Kojiro
Kadono, Kentaro
Zhai, Yuan
Farmer, Douglas G.
Kaldas, Fady M.
Kupiec-Weglinski, Jerzy W.
author_facet Hirao, Hirofumi
Kojima, Hidenobu
Dery, Kenneth J.
Nakamura, Kojiro
Kadono, Kentaro
Zhai, Yuan
Farmer, Douglas G.
Kaldas, Fady M.
Kupiec-Weglinski, Jerzy W.
author_sort Hirao, Hirofumi
collection PubMed
description Neutrophils, the largest innate immune cell population in humans, are the primary proinflammatory sentinel in the ischemia-reperfusion injury (IRI) mechanism in orthotopic liver transplantation (OLT). Carcinoembryonic antigen–related cell adhesion molecule 1 (CEACAM1, CC1, or CD66a) is essential in neutrophil activation and serves as a checkpoint regulator of innate immune-driven IRI cascade in OLT. Although CC1 alternative splicing generates two functionally distinct short and long cytoplasmic isoforms, their role in neutrophil activation remains unknown. Here, we undertook molecular and functional studies to interrogate the significance of neutrophil CC1 signaling in mouse and human OLT recipients. In the experimental arm, we employed a mouse OLT model to document that ablation of recipient-derived neutrophil CC1-long (CC1-L) isotype aggravated hepatic IRI by promoting neutrophil extracellular traps (NETs). Notably, by regulating the S1P–S1PR2/S1PR3 axis, neutrophil CC1-L determined susceptibility to NET formation via autophagy signaling. In the clinical arm, liver grafts from 55 transplant patients selectively enriched for neutrophil CC1-L showed relative resistance to ischemia-reperfusion (IR) stress/tissue damage, improved hepatocellular function, and clinical outcomes. In conclusion, despite neutrophils being considered a principal villain in peritransplant tissue injury, their CC1-L isoform may serve as a regulator of IR stress resistance/NETosis in human and mouse OLT recipients.
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spelling pubmed-98883872023-02-06 Neutrophil CEACAM1 determines susceptibility to NETosis by regulating the S1PR2/S1PR3 axis in liver transplantation Hirao, Hirofumi Kojima, Hidenobu Dery, Kenneth J. Nakamura, Kojiro Kadono, Kentaro Zhai, Yuan Farmer, Douglas G. Kaldas, Fady M. Kupiec-Weglinski, Jerzy W. J Clin Invest Research Article Neutrophils, the largest innate immune cell population in humans, are the primary proinflammatory sentinel in the ischemia-reperfusion injury (IRI) mechanism in orthotopic liver transplantation (OLT). Carcinoembryonic antigen–related cell adhesion molecule 1 (CEACAM1, CC1, or CD66a) is essential in neutrophil activation and serves as a checkpoint regulator of innate immune-driven IRI cascade in OLT. Although CC1 alternative splicing generates two functionally distinct short and long cytoplasmic isoforms, their role in neutrophil activation remains unknown. Here, we undertook molecular and functional studies to interrogate the significance of neutrophil CC1 signaling in mouse and human OLT recipients. In the experimental arm, we employed a mouse OLT model to document that ablation of recipient-derived neutrophil CC1-long (CC1-L) isotype aggravated hepatic IRI by promoting neutrophil extracellular traps (NETs). Notably, by regulating the S1P–S1PR2/S1PR3 axis, neutrophil CC1-L determined susceptibility to NET formation via autophagy signaling. In the clinical arm, liver grafts from 55 transplant patients selectively enriched for neutrophil CC1-L showed relative resistance to ischemia-reperfusion (IR) stress/tissue damage, improved hepatocellular function, and clinical outcomes. In conclusion, despite neutrophils being considered a principal villain in peritransplant tissue injury, their CC1-L isoform may serve as a regulator of IR stress resistance/NETosis in human and mouse OLT recipients. American Society for Clinical Investigation 2023-02-01 /pmc/articles/PMC9888387/ /pubmed/36719377 http://dx.doi.org/10.1172/JCI162940 Text en © 2023 Hirao et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Hirao, Hirofumi
Kojima, Hidenobu
Dery, Kenneth J.
Nakamura, Kojiro
Kadono, Kentaro
Zhai, Yuan
Farmer, Douglas G.
Kaldas, Fady M.
Kupiec-Weglinski, Jerzy W.
Neutrophil CEACAM1 determines susceptibility to NETosis by regulating the S1PR2/S1PR3 axis in liver transplantation
title Neutrophil CEACAM1 determines susceptibility to NETosis by regulating the S1PR2/S1PR3 axis in liver transplantation
title_full Neutrophil CEACAM1 determines susceptibility to NETosis by regulating the S1PR2/S1PR3 axis in liver transplantation
title_fullStr Neutrophil CEACAM1 determines susceptibility to NETosis by regulating the S1PR2/S1PR3 axis in liver transplantation
title_full_unstemmed Neutrophil CEACAM1 determines susceptibility to NETosis by regulating the S1PR2/S1PR3 axis in liver transplantation
title_short Neutrophil CEACAM1 determines susceptibility to NETosis by regulating the S1PR2/S1PR3 axis in liver transplantation
title_sort neutrophil ceacam1 determines susceptibility to netosis by regulating the s1pr2/s1pr3 axis in liver transplantation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9888387/
https://www.ncbi.nlm.nih.gov/pubmed/36719377
http://dx.doi.org/10.1172/JCI162940
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