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Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia

Eosinophils are effectors in immunity to tissue helminths but also induce allergic immunopathology. Mechanisms of eosinophilia in non-mucosal tissues during infection remain unresolved. Here we identify a pivotal function of tissue macrophages (Mϕ) in eosinophil anti-helminth immunity using a BALB/c...

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Autores principales: Turner, Joseph D., Pionnier, Nicolas, Furlong-Silva, Julio, Sjoberg, Hanna, Cross, Stephen, Halliday, Alice, Guimaraes, Ana F., Cook, Darren A. N., Steven, Andrew, Van Rooijen, Nico, Allen, Judith E., Jenkins, Stephen J., Taylor, Mark J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5874077/
https://www.ncbi.nlm.nih.gov/pubmed/29547639
http://dx.doi.org/10.1371/journal.ppat.1006949
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author Turner, Joseph D.
Pionnier, Nicolas
Furlong-Silva, Julio
Sjoberg, Hanna
Cross, Stephen
Halliday, Alice
Guimaraes, Ana F.
Cook, Darren A. N.
Steven, Andrew
Van Rooijen, Nico
Allen, Judith E.
Jenkins, Stephen J.
Taylor, Mark J.
author_facet Turner, Joseph D.
Pionnier, Nicolas
Furlong-Silva, Julio
Sjoberg, Hanna
Cross, Stephen
Halliday, Alice
Guimaraes, Ana F.
Cook, Darren A. N.
Steven, Andrew
Van Rooijen, Nico
Allen, Judith E.
Jenkins, Stephen J.
Taylor, Mark J.
author_sort Turner, Joseph D.
collection PubMed
description Eosinophils are effectors in immunity to tissue helminths but also induce allergic immunopathology. Mechanisms of eosinophilia in non-mucosal tissues during infection remain unresolved. Here we identify a pivotal function of tissue macrophages (Mϕ) in eosinophil anti-helminth immunity using a BALB/c mouse intra-peritoneal Brugia malayi filarial infection model. Eosinophilia, via C-C motif chemokine receptor (CCR)3, was necessary for immunity as CCR3 and eosinophil impairments rendered mice susceptible to chronic filarial infection. Post-infection, peritoneal Mϕ populations proliferated and became alternatively-activated (AAMϕ). Filarial AAMϕ development required adaptive immunity and interleukin-4 receptor-alpha. Depletion of Mϕ prior to infection suppressed eosinophilia and facilitated worm survival. Add back of filarial AAMϕ in Mϕ-depleted mice recapitulated a vigorous eosinophilia. Transfer of filarial AAMϕ into Severe-Combined Immune Deficient mice mediated immunological resistance in an eosinophil-dependent manner. Exogenous IL-4 delivery recapitulated tissue AAMϕ expansions, sustained eosinophilia and mediated immunological resistance in Mϕ-intact SCID mice. Co-culturing Brugia with filarial AAMϕ and/or filarial-recruited eosinophils confirmed eosinophils as the larvicidal cell type. Our data demonstrates that IL-4/IL-4Rα activated AAMϕ orchestrate eosinophil immunity to filarial tissue helminth infection.
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spelling pubmed-58740772018-04-06 Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia Turner, Joseph D. Pionnier, Nicolas Furlong-Silva, Julio Sjoberg, Hanna Cross, Stephen Halliday, Alice Guimaraes, Ana F. Cook, Darren A. N. Steven, Andrew Van Rooijen, Nico Allen, Judith E. Jenkins, Stephen J. Taylor, Mark J. PLoS Pathog Research Article Eosinophils are effectors in immunity to tissue helminths but also induce allergic immunopathology. Mechanisms of eosinophilia in non-mucosal tissues during infection remain unresolved. Here we identify a pivotal function of tissue macrophages (Mϕ) in eosinophil anti-helminth immunity using a BALB/c mouse intra-peritoneal Brugia malayi filarial infection model. Eosinophilia, via C-C motif chemokine receptor (CCR)3, was necessary for immunity as CCR3 and eosinophil impairments rendered mice susceptible to chronic filarial infection. Post-infection, peritoneal Mϕ populations proliferated and became alternatively-activated (AAMϕ). Filarial AAMϕ development required adaptive immunity and interleukin-4 receptor-alpha. Depletion of Mϕ prior to infection suppressed eosinophilia and facilitated worm survival. Add back of filarial AAMϕ in Mϕ-depleted mice recapitulated a vigorous eosinophilia. Transfer of filarial AAMϕ into Severe-Combined Immune Deficient mice mediated immunological resistance in an eosinophil-dependent manner. Exogenous IL-4 delivery recapitulated tissue AAMϕ expansions, sustained eosinophilia and mediated immunological resistance in Mϕ-intact SCID mice. Co-culturing Brugia with filarial AAMϕ and/or filarial-recruited eosinophils confirmed eosinophils as the larvicidal cell type. Our data demonstrates that IL-4/IL-4Rα activated AAMϕ orchestrate eosinophil immunity to filarial tissue helminth infection. Public Library of Science 2018-03-16 /pmc/articles/PMC5874077/ /pubmed/29547639 http://dx.doi.org/10.1371/journal.ppat.1006949 Text en © 2018 Turner 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
Turner, Joseph D.
Pionnier, Nicolas
Furlong-Silva, Julio
Sjoberg, Hanna
Cross, Stephen
Halliday, Alice
Guimaraes, Ana F.
Cook, Darren A. N.
Steven, Andrew
Van Rooijen, Nico
Allen, Judith E.
Jenkins, Stephen J.
Taylor, Mark J.
Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia
title Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia
title_full Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia
title_fullStr Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia
title_full_unstemmed Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia
title_short Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia
title_sort interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining ccr3-dependent eosinophilia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5874077/
https://www.ncbi.nlm.nih.gov/pubmed/29547639
http://dx.doi.org/10.1371/journal.ppat.1006949
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