Cargando…

IL4Rα Signaling Abrogates Hypoxic Neutrophil Survival and Limits Acute Lung Injury Responses In Vivo

Rationale: Acute respiratory distress syndrome is defined by the presence of systemic hypoxia and consequent on disordered neutrophilic inflammation. Local mechanisms limiting the duration and magnitude of this neutrophilic response remain poorly understood. Objectives: To test the hypothesis that d...

Descripción completa

Detalles Bibliográficos
Autores principales: Harris, Alison J., Mirchandani, Ananda S., Lynch, Ruairi W., Murphy, Fiona, Delaney, Liam, Small, Donna, Coelho, Patricia, Watts, Emily R., Sadiku, Pranvera, Griffith, David, Dickinson, Rebecca S., Clark, Eilidh, Willson, Joseph A., Morrison, Tyler, Mazzone, Massimilliano, Carmeliet, Peter, Ghesquiere, Bart, O’Kane, Cecilia, McAuley, Danny, Jenkins, Steve J., Whyte, Moira K. B., Walmsley, Sarah R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Thoracic Society 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6635795/
https://www.ncbi.nlm.nih.gov/pubmed/30849228
http://dx.doi.org/10.1164/rccm.201808-1599OC
_version_ 1783435951920381952
author Harris, Alison J.
Mirchandani, Ananda S.
Lynch, Ruairi W.
Murphy, Fiona
Delaney, Liam
Small, Donna
Coelho, Patricia
Watts, Emily R.
Sadiku, Pranvera
Griffith, David
Dickinson, Rebecca S.
Clark, Eilidh
Willson, Joseph A.
Morrison, Tyler
Mazzone, Massimilliano
Carmeliet, Peter
Ghesquiere, Bart
O’Kane, Cecilia
McAuley, Danny
Jenkins, Steve J.
Whyte, Moira K. B.
Walmsley, Sarah R.
author_facet Harris, Alison J.
Mirchandani, Ananda S.
Lynch, Ruairi W.
Murphy, Fiona
Delaney, Liam
Small, Donna
Coelho, Patricia
Watts, Emily R.
Sadiku, Pranvera
Griffith, David
Dickinson, Rebecca S.
Clark, Eilidh
Willson, Joseph A.
Morrison, Tyler
Mazzone, Massimilliano
Carmeliet, Peter
Ghesquiere, Bart
O’Kane, Cecilia
McAuley, Danny
Jenkins, Steve J.
Whyte, Moira K. B.
Walmsley, Sarah R.
author_sort Harris, Alison J.
collection PubMed
description Rationale: Acute respiratory distress syndrome is defined by the presence of systemic hypoxia and consequent on disordered neutrophilic inflammation. Local mechanisms limiting the duration and magnitude of this neutrophilic response remain poorly understood. Objectives: To test the hypothesis that during acute lung inflammation tissue production of proresolution type 2 cytokines (IL-4 and IL-13) dampens the proinflammatory effects of hypoxia through suppression of HIF-1α (hypoxia-inducible factor-1α)-mediated neutrophil adaptation, resulting in resolution of lung injury. Methods: Neutrophil activation of IL4Ra (IL-4 receptor α) signaling pathways was explored ex vivo in human acute respiratory distress syndrome patient samples, in vitro after the culture of human peripheral blood neutrophils with recombinant IL-4 under conditions of hypoxia, and in vivo through the study of IL4Ra-deficient neutrophils in competitive chimera models and wild-type mice treated with IL-4. Measurements and Main Results: IL-4 was elevated in human BAL from patients with acute respiratory distress syndrome, and its receptor was identified on patient blood neutrophils. Treatment of human neutrophils with IL-4 suppressed HIF-1α–dependent hypoxic survival and limited proinflammatory transcriptional responses. Increased neutrophil apoptosis in hypoxia, also observed with IL-13, required active STAT signaling, and was dependent on expression of the oxygen-sensing prolyl hydroxylase PHD2. In vivo, IL-4Ra–deficient neutrophils had a survival advantage within a hypoxic inflamed niche; in contrast, inflamed lung treatment with IL-4 accelerated resolution through increased neutrophil apoptosis. Conclusions: We describe an important interaction whereby IL4Rα-dependent type 2 cytokine signaling can directly inhibit hypoxic neutrophil survival in tissues and promote resolution of neutrophil-mediated acute lung injury.
format Online
Article
Text
id pubmed-6635795
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Thoracic Society
record_format MEDLINE/PubMed
spelling pubmed-66357952019-08-01 IL4Rα Signaling Abrogates Hypoxic Neutrophil Survival and Limits Acute Lung Injury Responses In Vivo Harris, Alison J. Mirchandani, Ananda S. Lynch, Ruairi W. Murphy, Fiona Delaney, Liam Small, Donna Coelho, Patricia Watts, Emily R. Sadiku, Pranvera Griffith, David Dickinson, Rebecca S. Clark, Eilidh Willson, Joseph A. Morrison, Tyler Mazzone, Massimilliano Carmeliet, Peter Ghesquiere, Bart O’Kane, Cecilia McAuley, Danny Jenkins, Steve J. Whyte, Moira K. B. Walmsley, Sarah R. Am J Respir Crit Care Med Original Articles Rationale: Acute respiratory distress syndrome is defined by the presence of systemic hypoxia and consequent on disordered neutrophilic inflammation. Local mechanisms limiting the duration and magnitude of this neutrophilic response remain poorly understood. Objectives: To test the hypothesis that during acute lung inflammation tissue production of proresolution type 2 cytokines (IL-4 and IL-13) dampens the proinflammatory effects of hypoxia through suppression of HIF-1α (hypoxia-inducible factor-1α)-mediated neutrophil adaptation, resulting in resolution of lung injury. Methods: Neutrophil activation of IL4Ra (IL-4 receptor α) signaling pathways was explored ex vivo in human acute respiratory distress syndrome patient samples, in vitro after the culture of human peripheral blood neutrophils with recombinant IL-4 under conditions of hypoxia, and in vivo through the study of IL4Ra-deficient neutrophils in competitive chimera models and wild-type mice treated with IL-4. Measurements and Main Results: IL-4 was elevated in human BAL from patients with acute respiratory distress syndrome, and its receptor was identified on patient blood neutrophils. Treatment of human neutrophils with IL-4 suppressed HIF-1α–dependent hypoxic survival and limited proinflammatory transcriptional responses. Increased neutrophil apoptosis in hypoxia, also observed with IL-13, required active STAT signaling, and was dependent on expression of the oxygen-sensing prolyl hydroxylase PHD2. In vivo, IL-4Ra–deficient neutrophils had a survival advantage within a hypoxic inflamed niche; in contrast, inflamed lung treatment with IL-4 accelerated resolution through increased neutrophil apoptosis. Conclusions: We describe an important interaction whereby IL4Rα-dependent type 2 cytokine signaling can directly inhibit hypoxic neutrophil survival in tissues and promote resolution of neutrophil-mediated acute lung injury. American Thoracic Society 2019-07-15 2019-07-15 /pmc/articles/PMC6635795/ /pubmed/30849228 http://dx.doi.org/10.1164/rccm.201808-1599OC Text en Copyright © 2019 by the American Thoracic Society https://creativecommons.org/licenses/by/4.0/This article is open access and distributed under the terms of the Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Articles
Harris, Alison J.
Mirchandani, Ananda S.
Lynch, Ruairi W.
Murphy, Fiona
Delaney, Liam
Small, Donna
Coelho, Patricia
Watts, Emily R.
Sadiku, Pranvera
Griffith, David
Dickinson, Rebecca S.
Clark, Eilidh
Willson, Joseph A.
Morrison, Tyler
Mazzone, Massimilliano
Carmeliet, Peter
Ghesquiere, Bart
O’Kane, Cecilia
McAuley, Danny
Jenkins, Steve J.
Whyte, Moira K. B.
Walmsley, Sarah R.
IL4Rα Signaling Abrogates Hypoxic Neutrophil Survival and Limits Acute Lung Injury Responses In Vivo
title IL4Rα Signaling Abrogates Hypoxic Neutrophil Survival and Limits Acute Lung Injury Responses In Vivo
title_full IL4Rα Signaling Abrogates Hypoxic Neutrophil Survival and Limits Acute Lung Injury Responses In Vivo
title_fullStr IL4Rα Signaling Abrogates Hypoxic Neutrophil Survival and Limits Acute Lung Injury Responses In Vivo
title_full_unstemmed IL4Rα Signaling Abrogates Hypoxic Neutrophil Survival and Limits Acute Lung Injury Responses In Vivo
title_short IL4Rα Signaling Abrogates Hypoxic Neutrophil Survival and Limits Acute Lung Injury Responses In Vivo
title_sort il4rα signaling abrogates hypoxic neutrophil survival and limits acute lung injury responses in vivo
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6635795/
https://www.ncbi.nlm.nih.gov/pubmed/30849228
http://dx.doi.org/10.1164/rccm.201808-1599OC
work_keys_str_mv AT harrisalisonj il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT mirchandanianandas il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT lynchruairiw il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT murphyfiona il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT delaneyliam il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT smalldonna il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT coelhopatricia il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT wattsemilyr il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT sadikupranvera il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT griffithdavid il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT dickinsonrebeccas il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT clarkeilidh il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT willsonjosepha il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT morrisontyler il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT mazzonemassimilliano il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT carmelietpeter il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT ghesquierebart il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT okanececilia il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT mcauleydanny il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT jenkinsstevej il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT whytemoirakb il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo
AT walmsleysarahr il4rasignalingabrogateshypoxicneutrophilsurvivalandlimitsacutelunginjuryresponsesinvivo