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Necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury

Ischemia reperfusion injury represents a common pathological condition that is triggered by the release of endogenous ligands. While neutrophils are known to play a critical role in its pathogenesis, the tissue-specific spatiotemporal regulation of ischemia-reperfusion injury is not understood. Here...

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Autores principales: Li, Wenjun, Terada, Yuriko, Tyurina, Yulia Y., Tyurin, Vladimir A., Bery, Amit I., Gauthier, Jason M., Higashikubo, Ryuji, Tong, Alice Y., Zhou, Dequan, Nunez-Santana, Felix, Lecuona, Emilia, Hassan, Adil, Hashimoto, Kohei, Scozzi, Davide, Puri, Varun, Nava, Ruben G., Krupnick, Alexander S., Lavine, Kory J., Gelman, Andrew E., Miller, Mark J., Kagan, Valerian E., Bharat, Ankit, Kreisel, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8917381/
https://www.ncbi.nlm.nih.gov/pubmed/35238643
http://dx.doi.org/10.1073/pnas.2111537119
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author Li, Wenjun
Terada, Yuriko
Tyurina, Yulia Y.
Tyurin, Vladimir A.
Bery, Amit I.
Gauthier, Jason M.
Higashikubo, Ryuji
Tong, Alice Y.
Zhou, Dequan
Nunez-Santana, Felix
Lecuona, Emilia
Hassan, Adil
Hashimoto, Kohei
Scozzi, Davide
Puri, Varun
Nava, Ruben G.
Krupnick, Alexander S.
Lavine, Kory J.
Gelman, Andrew E.
Miller, Mark J.
Kagan, Valerian E.
Bharat, Ankit
Kreisel, Daniel
author_facet Li, Wenjun
Terada, Yuriko
Tyurina, Yulia Y.
Tyurin, Vladimir A.
Bery, Amit I.
Gauthier, Jason M.
Higashikubo, Ryuji
Tong, Alice Y.
Zhou, Dequan
Nunez-Santana, Felix
Lecuona, Emilia
Hassan, Adil
Hashimoto, Kohei
Scozzi, Davide
Puri, Varun
Nava, Ruben G.
Krupnick, Alexander S.
Lavine, Kory J.
Gelman, Andrew E.
Miller, Mark J.
Kagan, Valerian E.
Bharat, Ankit
Kreisel, Daniel
author_sort Li, Wenjun
collection PubMed
description Ischemia reperfusion injury represents a common pathological condition that is triggered by the release of endogenous ligands. While neutrophils are known to play a critical role in its pathogenesis, the tissue-specific spatiotemporal regulation of ischemia-reperfusion injury is not understood. Here, using oxidative lipidomics and intravital imaging of transplanted mouse lungs that are subjected to severe ischemia reperfusion injury, we discovered that necroptosis, a nonapoptotic form of cell death, triggers the recruitment of neutrophils. During the initial stages of inflammation, neutrophils traffic predominantly to subpleural vessels, where their aggregation is directed by chemoattractants produced by nonclassical monocytes that are spatially restricted in this vascular compartment. Subsequent neutrophilic disruption of capillaries resulting in vascular leakage is associated with impaired graft function. We found that TLR4 signaling in vascular endothelial cells and downstream NADPH oxidase 4 expression mediate the arrest of neutrophils, a step upstream of their extravasation. Neutrophil extracellular traps formed in injured lungs and their disruption with DNase prevented vascular leakage and ameliorated primary graft dysfunction. Thus, we have uncovered mechanisms that regulate the initial recruitment of neutrophils to injured lungs, which result in selective damage to subpleural pulmonary vessels and primary graft dysfunction. Our findings could lead to the development of new therapeutics that protect lungs from ischemia reperfusion injury.
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spelling pubmed-89173812022-09-01 Necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury Li, Wenjun Terada, Yuriko Tyurina, Yulia Y. Tyurin, Vladimir A. Bery, Amit I. Gauthier, Jason M. Higashikubo, Ryuji Tong, Alice Y. Zhou, Dequan Nunez-Santana, Felix Lecuona, Emilia Hassan, Adil Hashimoto, Kohei Scozzi, Davide Puri, Varun Nava, Ruben G. Krupnick, Alexander S. Lavine, Kory J. Gelman, Andrew E. Miller, Mark J. Kagan, Valerian E. Bharat, Ankit Kreisel, Daniel Proc Natl Acad Sci U S A Biological Sciences Ischemia reperfusion injury represents a common pathological condition that is triggered by the release of endogenous ligands. While neutrophils are known to play a critical role in its pathogenesis, the tissue-specific spatiotemporal regulation of ischemia-reperfusion injury is not understood. Here, using oxidative lipidomics and intravital imaging of transplanted mouse lungs that are subjected to severe ischemia reperfusion injury, we discovered that necroptosis, a nonapoptotic form of cell death, triggers the recruitment of neutrophils. During the initial stages of inflammation, neutrophils traffic predominantly to subpleural vessels, where their aggregation is directed by chemoattractants produced by nonclassical monocytes that are spatially restricted in this vascular compartment. Subsequent neutrophilic disruption of capillaries resulting in vascular leakage is associated with impaired graft function. We found that TLR4 signaling in vascular endothelial cells and downstream NADPH oxidase 4 expression mediate the arrest of neutrophils, a step upstream of their extravasation. Neutrophil extracellular traps formed in injured lungs and their disruption with DNase prevented vascular leakage and ameliorated primary graft dysfunction. Thus, we have uncovered mechanisms that regulate the initial recruitment of neutrophils to injured lungs, which result in selective damage to subpleural pulmonary vessels and primary graft dysfunction. Our findings could lead to the development of new therapeutics that protect lungs from ischemia reperfusion injury. National Academy of Sciences 2022-03-01 2022-03-08 /pmc/articles/PMC8917381/ /pubmed/35238643 http://dx.doi.org/10.1073/pnas.2111537119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Li, Wenjun
Terada, Yuriko
Tyurina, Yulia Y.
Tyurin, Vladimir A.
Bery, Amit I.
Gauthier, Jason M.
Higashikubo, Ryuji
Tong, Alice Y.
Zhou, Dequan
Nunez-Santana, Felix
Lecuona, Emilia
Hassan, Adil
Hashimoto, Kohei
Scozzi, Davide
Puri, Varun
Nava, Ruben G.
Krupnick, Alexander S.
Lavine, Kory J.
Gelman, Andrew E.
Miller, Mark J.
Kagan, Valerian E.
Bharat, Ankit
Kreisel, Daniel
Necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury
title Necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury
title_full Necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury
title_fullStr Necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury
title_full_unstemmed Necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury
title_short Necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury
title_sort necroptosis triggers spatially restricted neutrophil-mediated vascular damage during lung ischemia reperfusion injury
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8917381/
https://www.ncbi.nlm.nih.gov/pubmed/35238643
http://dx.doi.org/10.1073/pnas.2111537119
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