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IL-4 receptor dependent expansion of lung CD169(+) macrophages in microfilaria-driven inflammation

Lung disease is regularly reported in human filarial infections but the molecular pathogenesis of pulmonary filariasis is poorly understood. We used Litomosoides sigmodontis, a rodent filaria residing in the pleural cavity responsible for pleural inflammation, to model responses to human filarial in...

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Autores principales: Fercoq, Frédéric, Remion, Estelle, Frohberger, Stefan J., Vallarino-Lhermitte, Nathaly, Hoerauf, Achim, Le Quesne, John, Landmann, Frédéric, Hübner, Marc P., Carlin, Leo M., Martin, Coralie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6742411/
https://www.ncbi.nlm.nih.gov/pubmed/31469835
http://dx.doi.org/10.1371/journal.pntd.0007691
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author Fercoq, Frédéric
Remion, Estelle
Frohberger, Stefan J.
Vallarino-Lhermitte, Nathaly
Hoerauf, Achim
Le Quesne, John
Landmann, Frédéric
Hübner, Marc P.
Carlin, Leo M.
Martin, Coralie
author_facet Fercoq, Frédéric
Remion, Estelle
Frohberger, Stefan J.
Vallarino-Lhermitte, Nathaly
Hoerauf, Achim
Le Quesne, John
Landmann, Frédéric
Hübner, Marc P.
Carlin, Leo M.
Martin, Coralie
author_sort Fercoq, Frédéric
collection PubMed
description Lung disease is regularly reported in human filarial infections but the molecular pathogenesis of pulmonary filariasis is poorly understood. We used Litomosoides sigmodontis, a rodent filaria residing in the pleural cavity responsible for pleural inflammation, to model responses to human filarial infections and probe the mechanisms. Wild-type and Th2-deficient mice (ΔdblGata1 and Il-4receptor(r)a(-/-)/IL-5(-/-)) were infected with L. sigmodontis. Survival and growth of adult filariae and prevalence and density of microfilariae were evaluated. Cells and cytokines in the pleural cavity and bronchoalveolar space were characterized by imaging, flow cytometry and ELISA. Inflammatory pathways were evaluated by transcriptomic microarrays and lungs were isolated and analyzed for histopathological signatures. 40% of WT mice were amicrofilaremic whereas almost all mutant mice display blood microfilaremia. Microfilariae induced pleural, bronchoalveolar and lung-tissue inflammation associated with an increase in bronchoalveolar eosinophils and perivascular macrophages, production of mucus, visceral pleura alterations and fibrosis. Inflammation and pathology were decreased in Th2-deficient mice. An IL-4R-dependent increase of CD169 was observed on pleural and bronchoalveolar macrophages in microfilaremic mice. CD169(+) tissue-resident macrophages were identified in the lungs with specific localizations. Strikingly, CD169(+) macrophages increased significantly in the perivascular area in microfilaremic mice. These data describe lung inflammation and pathology in chronic filariasis and emphasize the role of Th2 responses according to the presence of microfilariae. It is also the first report implicating CD169(+) lung macrophages in response to a Nematode infection.
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spelling pubmed-67424112019-09-20 IL-4 receptor dependent expansion of lung CD169(+) macrophages in microfilaria-driven inflammation Fercoq, Frédéric Remion, Estelle Frohberger, Stefan J. Vallarino-Lhermitte, Nathaly Hoerauf, Achim Le Quesne, John Landmann, Frédéric Hübner, Marc P. Carlin, Leo M. Martin, Coralie PLoS Negl Trop Dis Research Article Lung disease is regularly reported in human filarial infections but the molecular pathogenesis of pulmonary filariasis is poorly understood. We used Litomosoides sigmodontis, a rodent filaria residing in the pleural cavity responsible for pleural inflammation, to model responses to human filarial infections and probe the mechanisms. Wild-type and Th2-deficient mice (ΔdblGata1 and Il-4receptor(r)a(-/-)/IL-5(-/-)) were infected with L. sigmodontis. Survival and growth of adult filariae and prevalence and density of microfilariae were evaluated. Cells and cytokines in the pleural cavity and bronchoalveolar space were characterized by imaging, flow cytometry and ELISA. Inflammatory pathways were evaluated by transcriptomic microarrays and lungs were isolated and analyzed for histopathological signatures. 40% of WT mice were amicrofilaremic whereas almost all mutant mice display blood microfilaremia. Microfilariae induced pleural, bronchoalveolar and lung-tissue inflammation associated with an increase in bronchoalveolar eosinophils and perivascular macrophages, production of mucus, visceral pleura alterations and fibrosis. Inflammation and pathology were decreased in Th2-deficient mice. An IL-4R-dependent increase of CD169 was observed on pleural and bronchoalveolar macrophages in microfilaremic mice. CD169(+) tissue-resident macrophages were identified in the lungs with specific localizations. Strikingly, CD169(+) macrophages increased significantly in the perivascular area in microfilaremic mice. These data describe lung inflammation and pathology in chronic filariasis and emphasize the role of Th2 responses according to the presence of microfilariae. It is also the first report implicating CD169(+) lung macrophages in response to a Nematode infection. Public Library of Science 2019-08-30 /pmc/articles/PMC6742411/ /pubmed/31469835 http://dx.doi.org/10.1371/journal.pntd.0007691 Text en © 2019 Fercoq et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Fercoq, Frédéric
Remion, Estelle
Frohberger, Stefan J.
Vallarino-Lhermitte, Nathaly
Hoerauf, Achim
Le Quesne, John
Landmann, Frédéric
Hübner, Marc P.
Carlin, Leo M.
Martin, Coralie
IL-4 receptor dependent expansion of lung CD169(+) macrophages in microfilaria-driven inflammation
title IL-4 receptor dependent expansion of lung CD169(+) macrophages in microfilaria-driven inflammation
title_full IL-4 receptor dependent expansion of lung CD169(+) macrophages in microfilaria-driven inflammation
title_fullStr IL-4 receptor dependent expansion of lung CD169(+) macrophages in microfilaria-driven inflammation
title_full_unstemmed IL-4 receptor dependent expansion of lung CD169(+) macrophages in microfilaria-driven inflammation
title_short IL-4 receptor dependent expansion of lung CD169(+) macrophages in microfilaria-driven inflammation
title_sort il-4 receptor dependent expansion of lung cd169(+) macrophages in microfilaria-driven inflammation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6742411/
https://www.ncbi.nlm.nih.gov/pubmed/31469835
http://dx.doi.org/10.1371/journal.pntd.0007691
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