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ICOS controls Foxp3(+) regulatory T-cell expansion, maintenance and IL-10 production during helminth infection

Foxp3(+) regulatory T (Treg) cells are key immune regulators during helminth infections, and identifying the mechanisms governing their induction is of principal importance for the design of treatments for helminth infections, allergies and autoimmunity. Little is yet known regarding the co-stimulat...

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Autores principales: Redpath, Stephen A, van der Werf, Nienke, Cervera, Ana M, MacDonald, Andrew S, Gray, David, Maizels, Rick M, Taylor, Matthew D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3615169/
https://www.ncbi.nlm.nih.gov/pubmed/23319295
http://dx.doi.org/10.1002/eji.201242794
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author Redpath, Stephen A
van der Werf, Nienke
Cervera, Ana M
MacDonald, Andrew S
Gray, David
Maizels, Rick M
Taylor, Matthew D
author_facet Redpath, Stephen A
van der Werf, Nienke
Cervera, Ana M
MacDonald, Andrew S
Gray, David
Maizels, Rick M
Taylor, Matthew D
author_sort Redpath, Stephen A
collection PubMed
description Foxp3(+) regulatory T (Treg) cells are key immune regulators during helminth infections, and identifying the mechanisms governing their induction is of principal importance for the design of treatments for helminth infections, allergies and autoimmunity. Little is yet known regarding the co-stimulatory environment that favours the development of Foxp3(+) Treg-cell responses during helminth infections. As recent evidence implicates the co-stimulatory receptor ICOS in defining Foxp3(+) Treg-cell functions, we investigated the role of ICOS in helminth-induced Foxp3(+) Treg-cell responses. Infection of ICOS(−/−) mice with Heligmosomoides polygyrus or Schistosoma mansoni led to a reduced expansion and maintenance of Foxp3(+) Treg cells. Moreover, during H. polygyrus infection, ICOS deficiency resulted in increased Foxp3(+) Treg-cell apoptosis, a Foxp3(+) Treg-cell specific impairment in IL-10 production, and a failure to mount putatively adaptive Helios(−)Foxp3(+) Treg-cell responses within the intestinal lamina propria. Impaired lamina propria Foxp3(+) Treg-cell responses were associated with increased production of IL-4 and IL-13 by CD4(+) T cells, demonstrating that ICOS dominantly downregulates Type 2 responses at the infection site, sharply contrasting with its Type 2-promoting effects within lymphoid tissue. Thus, ICOS regulates Type 2 immunity in a tissue-specific manner, and plays a key role in driving Foxp3(+) Treg-cell expansion and function during helminth infections.
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spelling pubmed-36151692013-04-04 ICOS controls Foxp3(+) regulatory T-cell expansion, maintenance and IL-10 production during helminth infection Redpath, Stephen A van der Werf, Nienke Cervera, Ana M MacDonald, Andrew S Gray, David Maizels, Rick M Taylor, Matthew D Eur J Immunol Immunity to Infection Foxp3(+) regulatory T (Treg) cells are key immune regulators during helminth infections, and identifying the mechanisms governing their induction is of principal importance for the design of treatments for helminth infections, allergies and autoimmunity. Little is yet known regarding the co-stimulatory environment that favours the development of Foxp3(+) Treg-cell responses during helminth infections. As recent evidence implicates the co-stimulatory receptor ICOS in defining Foxp3(+) Treg-cell functions, we investigated the role of ICOS in helminth-induced Foxp3(+) Treg-cell responses. Infection of ICOS(−/−) mice with Heligmosomoides polygyrus or Schistosoma mansoni led to a reduced expansion and maintenance of Foxp3(+) Treg cells. Moreover, during H. polygyrus infection, ICOS deficiency resulted in increased Foxp3(+) Treg-cell apoptosis, a Foxp3(+) Treg-cell specific impairment in IL-10 production, and a failure to mount putatively adaptive Helios(−)Foxp3(+) Treg-cell responses within the intestinal lamina propria. Impaired lamina propria Foxp3(+) Treg-cell responses were associated with increased production of IL-4 and IL-13 by CD4(+) T cells, demonstrating that ICOS dominantly downregulates Type 2 responses at the infection site, sharply contrasting with its Type 2-promoting effects within lymphoid tissue. Thus, ICOS regulates Type 2 immunity in a tissue-specific manner, and plays a key role in driving Foxp3(+) Treg-cell expansion and function during helminth infections. Blackwell Publishing Ltd 2013-03 2013-01-14 /pmc/articles/PMC3615169/ /pubmed/23319295 http://dx.doi.org/10.1002/eji.201242794 Text en © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Immunity to Infection
Redpath, Stephen A
van der Werf, Nienke
Cervera, Ana M
MacDonald, Andrew S
Gray, David
Maizels, Rick M
Taylor, Matthew D
ICOS controls Foxp3(+) regulatory T-cell expansion, maintenance and IL-10 production during helminth infection
title ICOS controls Foxp3(+) regulatory T-cell expansion, maintenance and IL-10 production during helminth infection
title_full ICOS controls Foxp3(+) regulatory T-cell expansion, maintenance and IL-10 production during helminth infection
title_fullStr ICOS controls Foxp3(+) regulatory T-cell expansion, maintenance and IL-10 production during helminth infection
title_full_unstemmed ICOS controls Foxp3(+) regulatory T-cell expansion, maintenance and IL-10 production during helminth infection
title_short ICOS controls Foxp3(+) regulatory T-cell expansion, maintenance and IL-10 production during helminth infection
title_sort icos controls foxp3(+) regulatory t-cell expansion, maintenance and il-10 production during helminth infection
topic Immunity to Infection
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3615169/
https://www.ncbi.nlm.nih.gov/pubmed/23319295
http://dx.doi.org/10.1002/eji.201242794
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