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Pleural Resident Macrophages and Pleural IRA B Cells Promote Efficient Immunity Against Pneumonia by Inducing Early Pleural Space Inflammation

Airway infection is a major cause of mortality worldwide. The identification of new mechanisms aiding in effective host immune response is therefore required. Here, we show that the specific depletion of the pleural immune cell compartment during bacterial pneumonia resulted in a reduced pulmonary i...

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Autores principales: Bénard, Alan, Podolska, Malgorzata J., Czubayko, Franziska, Kutschick, Isabella, Klösch, Bettina, Jacobsen, Anne, Naschberger, Elisabeth, Brunner, Maximilian, Krautz, Christian, Trufa, Denis I., Sirbu, Horia, Lang, Roland, Grützmann, Robert, Weber, Georg F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9047739/
https://www.ncbi.nlm.nih.gov/pubmed/35493510
http://dx.doi.org/10.3389/fimmu.2022.821480
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author Bénard, Alan
Podolska, Malgorzata J.
Czubayko, Franziska
Kutschick, Isabella
Klösch, Bettina
Jacobsen, Anne
Naschberger, Elisabeth
Brunner, Maximilian
Krautz, Christian
Trufa, Denis I.
Sirbu, Horia
Lang, Roland
Grützmann, Robert
Weber, Georg F.
author_facet Bénard, Alan
Podolska, Malgorzata J.
Czubayko, Franziska
Kutschick, Isabella
Klösch, Bettina
Jacobsen, Anne
Naschberger, Elisabeth
Brunner, Maximilian
Krautz, Christian
Trufa, Denis I.
Sirbu, Horia
Lang, Roland
Grützmann, Robert
Weber, Georg F.
author_sort Bénard, Alan
collection PubMed
description Airway infection is a major cause of mortality worldwide. The identification of new mechanisms aiding in effective host immune response is therefore required. Here, we show that the specific depletion of the pleural immune cell compartment during bacterial pneumonia resulted in a reduced pulmonary immune response and increased mortality in mice. Bacterial airway infection provoked early pleural space (PS) inflammation characterized by innate response activator (IRA) B cell development and pleural large resident macrophage (LRM) necroptosis, the repopulation of LRMs being driven by cellular proliferation in situ. Necroptotic LRMs amplified PS inflammation by stimulating pleural Mincle-expressing macrophages whereas IRA B cells contributed partially to GM-CSF-induced PS inflammation. Upon pulmonary infection, the induction of PS inflammation resulted in reduced bacterial burden whereas the specific depletion of pleural resident macrophages led to increased mortality and bacterial burden and reduced pulmonary immunity. Moreover, mice in which B cells were unable to produce GM-CSF exhibited reduced CD103(+) dendritic cells and reduced CD4(+) T cell numbers in the draining lymph node. Altogether, our results describe a previously unrecognized mechanism of pleural space inflammation necessary for effective protection against bacterial airway infection.
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spelling pubmed-90477392022-04-29 Pleural Resident Macrophages and Pleural IRA B Cells Promote Efficient Immunity Against Pneumonia by Inducing Early Pleural Space Inflammation Bénard, Alan Podolska, Malgorzata J. Czubayko, Franziska Kutschick, Isabella Klösch, Bettina Jacobsen, Anne Naschberger, Elisabeth Brunner, Maximilian Krautz, Christian Trufa, Denis I. Sirbu, Horia Lang, Roland Grützmann, Robert Weber, Georg F. Front Immunol Immunology Airway infection is a major cause of mortality worldwide. The identification of new mechanisms aiding in effective host immune response is therefore required. Here, we show that the specific depletion of the pleural immune cell compartment during bacterial pneumonia resulted in a reduced pulmonary immune response and increased mortality in mice. Bacterial airway infection provoked early pleural space (PS) inflammation characterized by innate response activator (IRA) B cell development and pleural large resident macrophage (LRM) necroptosis, the repopulation of LRMs being driven by cellular proliferation in situ. Necroptotic LRMs amplified PS inflammation by stimulating pleural Mincle-expressing macrophages whereas IRA B cells contributed partially to GM-CSF-induced PS inflammation. Upon pulmonary infection, the induction of PS inflammation resulted in reduced bacterial burden whereas the specific depletion of pleural resident macrophages led to increased mortality and bacterial burden and reduced pulmonary immunity. Moreover, mice in which B cells were unable to produce GM-CSF exhibited reduced CD103(+) dendritic cells and reduced CD4(+) T cell numbers in the draining lymph node. Altogether, our results describe a previously unrecognized mechanism of pleural space inflammation necessary for effective protection against bacterial airway infection. Frontiers Media S.A. 2022-04-14 /pmc/articles/PMC9047739/ /pubmed/35493510 http://dx.doi.org/10.3389/fimmu.2022.821480 Text en Copyright © 2022 Bénard, Podolska, Czubayko, Kutschick, Klösch, Jacobsen, Naschberger, Brunner, Krautz, Trufa, Sirbu, Lang, Grützmann and Weber https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Bénard, Alan
Podolska, Malgorzata J.
Czubayko, Franziska
Kutschick, Isabella
Klösch, Bettina
Jacobsen, Anne
Naschberger, Elisabeth
Brunner, Maximilian
Krautz, Christian
Trufa, Denis I.
Sirbu, Horia
Lang, Roland
Grützmann, Robert
Weber, Georg F.
Pleural Resident Macrophages and Pleural IRA B Cells Promote Efficient Immunity Against Pneumonia by Inducing Early Pleural Space Inflammation
title Pleural Resident Macrophages and Pleural IRA B Cells Promote Efficient Immunity Against Pneumonia by Inducing Early Pleural Space Inflammation
title_full Pleural Resident Macrophages and Pleural IRA B Cells Promote Efficient Immunity Against Pneumonia by Inducing Early Pleural Space Inflammation
title_fullStr Pleural Resident Macrophages and Pleural IRA B Cells Promote Efficient Immunity Against Pneumonia by Inducing Early Pleural Space Inflammation
title_full_unstemmed Pleural Resident Macrophages and Pleural IRA B Cells Promote Efficient Immunity Against Pneumonia by Inducing Early Pleural Space Inflammation
title_short Pleural Resident Macrophages and Pleural IRA B Cells Promote Efficient Immunity Against Pneumonia by Inducing Early Pleural Space Inflammation
title_sort pleural resident macrophages and pleural ira b cells promote efficient immunity against pneumonia by inducing early pleural space inflammation
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9047739/
https://www.ncbi.nlm.nih.gov/pubmed/35493510
http://dx.doi.org/10.3389/fimmu.2022.821480
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