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CD11b suppresses TLR activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation

Primary graft dysfunction (PGD) is the leading cause of postoperative mortality in lung transplant recipients and the most important risk factor for development of chronic lung allograft dysfunction. The mechanistic basis for the variability in the incidence and severity of PGD between lung transpla...

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Autores principales: Querrey, Melissa, Chiu, Stephen, Lecuona, Emilia, Wu, Qiang, Sun, Haiying, Anderson, Megan, Kelly, Megan, Ravi, Sowmya, Misharin, Alexander V., Kreisel, Daniel, Bharat, Ankit, Budinger, G.R. Scott
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9282933/
https://www.ncbi.nlm.nih.gov/pubmed/35838047
http://dx.doi.org/10.1172/JCI157262
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author Querrey, Melissa
Chiu, Stephen
Lecuona, Emilia
Wu, Qiang
Sun, Haiying
Anderson, Megan
Kelly, Megan
Ravi, Sowmya
Misharin, Alexander V.
Kreisel, Daniel
Bharat, Ankit
Budinger, G.R. Scott
author_facet Querrey, Melissa
Chiu, Stephen
Lecuona, Emilia
Wu, Qiang
Sun, Haiying
Anderson, Megan
Kelly, Megan
Ravi, Sowmya
Misharin, Alexander V.
Kreisel, Daniel
Bharat, Ankit
Budinger, G.R. Scott
author_sort Querrey, Melissa
collection PubMed
description Primary graft dysfunction (PGD) is the leading cause of postoperative mortality in lung transplant recipients and the most important risk factor for development of chronic lung allograft dysfunction. The mechanistic basis for the variability in the incidence and severity of PGD between lung transplant recipients is not known. Using a murine orthotopic vascularized lung transplant model, we found that redundant activation of Toll-like receptors 2 and 4 (TLR2 and -4) on nonclassical monocytes activates MyD88, inducing the release of the neutrophil attractant chemokine CXCL2. Deletion of Itgam (encodes CD11b) in nonclassical monocytes enhanced their production of CXCL2 and worsened PGD, while a CD11b agonist, leukadherin-1, administered only to the donor lung prior to lung transplantation, abrogated CXCL2 production and PGD. The damage-associated molecular pattern molecule HMGB1 was increased in peripheral blood samples from patients undergoing lung transplantation after reperfusion and induced CXCL2 production in nonclassical monocytes via TLR4/MyD88. An inhibitor of HMGB1 administered to the donor and recipient prior to lung transplantation attenuated PGD. Our findings suggest that CD11b acts as a molecular brake to prevent neutrophil recruitment by nonclassical monocytes following lung transplantation, revealing an attractive therapeutic target in the donor lung to prevent PGD in lung transplant recipients.
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spelling pubmed-92829332022-07-18 CD11b suppresses TLR activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation Querrey, Melissa Chiu, Stephen Lecuona, Emilia Wu, Qiang Sun, Haiying Anderson, Megan Kelly, Megan Ravi, Sowmya Misharin, Alexander V. Kreisel, Daniel Bharat, Ankit Budinger, G.R. Scott J Clin Invest Research Article Primary graft dysfunction (PGD) is the leading cause of postoperative mortality in lung transplant recipients and the most important risk factor for development of chronic lung allograft dysfunction. The mechanistic basis for the variability in the incidence and severity of PGD between lung transplant recipients is not known. Using a murine orthotopic vascularized lung transplant model, we found that redundant activation of Toll-like receptors 2 and 4 (TLR2 and -4) on nonclassical monocytes activates MyD88, inducing the release of the neutrophil attractant chemokine CXCL2. Deletion of Itgam (encodes CD11b) in nonclassical monocytes enhanced their production of CXCL2 and worsened PGD, while a CD11b agonist, leukadherin-1, administered only to the donor lung prior to lung transplantation, abrogated CXCL2 production and PGD. The damage-associated molecular pattern molecule HMGB1 was increased in peripheral blood samples from patients undergoing lung transplantation after reperfusion and induced CXCL2 production in nonclassical monocytes via TLR4/MyD88. An inhibitor of HMGB1 administered to the donor and recipient prior to lung transplantation attenuated PGD. Our findings suggest that CD11b acts as a molecular brake to prevent neutrophil recruitment by nonclassical monocytes following lung transplantation, revealing an attractive therapeutic target in the donor lung to prevent PGD in lung transplant recipients. American Society for Clinical Investigation 2022-07-15 2022-07-15 /pmc/articles/PMC9282933/ /pubmed/35838047 http://dx.doi.org/10.1172/JCI157262 Text en © 2022 Querrey 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
Querrey, Melissa
Chiu, Stephen
Lecuona, Emilia
Wu, Qiang
Sun, Haiying
Anderson, Megan
Kelly, Megan
Ravi, Sowmya
Misharin, Alexander V.
Kreisel, Daniel
Bharat, Ankit
Budinger, G.R. Scott
CD11b suppresses TLR activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation
title CD11b suppresses TLR activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation
title_full CD11b suppresses TLR activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation
title_fullStr CD11b suppresses TLR activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation
title_full_unstemmed CD11b suppresses TLR activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation
title_short CD11b suppresses TLR activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation
title_sort cd11b suppresses tlr activation of nonclassical monocytes to reduce primary graft dysfunction after lung transplantation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9282933/
https://www.ncbi.nlm.nih.gov/pubmed/35838047
http://dx.doi.org/10.1172/JCI157262
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