Cargando…

Th2/1 Hybrid Cells Occurring in Murine and Human Strongyloidiasis Share Effector Functions of Th1 Cells

Infections by the soil-transmitted threadworm Strongyloides stercoralis affect 30–100 million people worldwide, predominantly in tropic and sub-tropic regions. Here we assessed the T helper cell phenotypes in threadworm-infected patients and experimental murine infections with focus on CD4(+) T cell...

Descripción completa

Detalles Bibliográficos
Autores principales: Bock, Cristin N., Babu, Subash, Breloer, Minka, Rajamanickam, Anuradha, Boothra, Yukhti, Brunn, Marie-Luise, Kühl, Anja A., Merle, Roswitha, Löhning, Max, Hartmann, Susanne, Rausch, Sebastian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5476698/
https://www.ncbi.nlm.nih.gov/pubmed/28676845
http://dx.doi.org/10.3389/fcimb.2017.00261
_version_ 1783244643085844480
author Bock, Cristin N.
Babu, Subash
Breloer, Minka
Rajamanickam, Anuradha
Boothra, Yukhti
Brunn, Marie-Luise
Kühl, Anja A.
Merle, Roswitha
Löhning, Max
Hartmann, Susanne
Rausch, Sebastian
author_facet Bock, Cristin N.
Babu, Subash
Breloer, Minka
Rajamanickam, Anuradha
Boothra, Yukhti
Brunn, Marie-Luise
Kühl, Anja A.
Merle, Roswitha
Löhning, Max
Hartmann, Susanne
Rausch, Sebastian
author_sort Bock, Cristin N.
collection PubMed
description Infections by the soil-transmitted threadworm Strongyloides stercoralis affect 30–100 million people worldwide, predominantly in tropic and sub-tropic regions. Here we assessed the T helper cell phenotypes in threadworm-infected patients and experimental murine infections with focus on CD4(+) T cells co-expressing markers of Th2 and Th1 differentiation. We show that mice infected with the close relative S. ratti generate strong Th2 responses characterized by the expansion of CD4(+) GATA-3(+) cells expressing IL-4/-5/-13 in blood, spleen, gut-draining lymph nodes, lung and gut tissue. In addition to conventional Th2 cells, significantly increased frequencies of GATA-3(+)T-bet(+) Th2/1-hybrid cells were detected in all organs and co-expressed Th2- and Th1-cytokines at intermediate levels. Assessing the phenotype of blood-derived CD4(+) T cells from South Indian patients infected with S. stercoralis and local uninfected control donors we found that GATA-3 expressing Th2 cells were significantly increased in the patient cohort, coinciding with elevated eosinophil and IgE/IgG4 levels. A fraction of IL-4(+)CD4(+) T cells simultaneously expressed IFN-γ hence displaying a Th2/1 hybrid phenotype. In accordance with murine Th2/1 cells, human Th2/1 cells expressed intermediate levels of Th2 cytokines. Contrasting their murine counterparts, human Th2/1 hybrids were marked by high levels of IFN-γ and rather low GATA-3 expression. Assessing the effector function of murine Th2/1 cells in vitro we found that Th2/1 cells were qualified for driving the classical activation of macrophages. Furthermore, Th2/1 cells shared innate, cytokine-driven effector functions with Th1 cells. Hence, the key findings of our study are that T helper cells with combined characteristics of Th2 and Th1 cells are integral to immune responses of helminth-infected mice, but also occur in helminth-infected humans and we suggest that Th2/1 cells are poised for the instruction of balanced immune responses during nematode infections.
format Online
Article
Text
id pubmed-5476698
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-54766982017-07-04 Th2/1 Hybrid Cells Occurring in Murine and Human Strongyloidiasis Share Effector Functions of Th1 Cells Bock, Cristin N. Babu, Subash Breloer, Minka Rajamanickam, Anuradha Boothra, Yukhti Brunn, Marie-Luise Kühl, Anja A. Merle, Roswitha Löhning, Max Hartmann, Susanne Rausch, Sebastian Front Cell Infect Microbiol Microbiology Infections by the soil-transmitted threadworm Strongyloides stercoralis affect 30–100 million people worldwide, predominantly in tropic and sub-tropic regions. Here we assessed the T helper cell phenotypes in threadworm-infected patients and experimental murine infections with focus on CD4(+) T cells co-expressing markers of Th2 and Th1 differentiation. We show that mice infected with the close relative S. ratti generate strong Th2 responses characterized by the expansion of CD4(+) GATA-3(+) cells expressing IL-4/-5/-13 in blood, spleen, gut-draining lymph nodes, lung and gut tissue. In addition to conventional Th2 cells, significantly increased frequencies of GATA-3(+)T-bet(+) Th2/1-hybrid cells were detected in all organs and co-expressed Th2- and Th1-cytokines at intermediate levels. Assessing the phenotype of blood-derived CD4(+) T cells from South Indian patients infected with S. stercoralis and local uninfected control donors we found that GATA-3 expressing Th2 cells were significantly increased in the patient cohort, coinciding with elevated eosinophil and IgE/IgG4 levels. A fraction of IL-4(+)CD4(+) T cells simultaneously expressed IFN-γ hence displaying a Th2/1 hybrid phenotype. In accordance with murine Th2/1 cells, human Th2/1 cells expressed intermediate levels of Th2 cytokines. Contrasting their murine counterparts, human Th2/1 hybrids were marked by high levels of IFN-γ and rather low GATA-3 expression. Assessing the effector function of murine Th2/1 cells in vitro we found that Th2/1 cells were qualified for driving the classical activation of macrophages. Furthermore, Th2/1 cells shared innate, cytokine-driven effector functions with Th1 cells. Hence, the key findings of our study are that T helper cells with combined characteristics of Th2 and Th1 cells are integral to immune responses of helminth-infected mice, but also occur in helminth-infected humans and we suggest that Th2/1 cells are poised for the instruction of balanced immune responses during nematode infections. Frontiers Media S.A. 2017-06-20 /pmc/articles/PMC5476698/ /pubmed/28676845 http://dx.doi.org/10.3389/fcimb.2017.00261 Text en Copyright © 2017 Bock, Babu, Breloer, Rajamanickam, Boothra, Brunn, Kühl, Merle, Löhning, Hartmann and Rausch. http://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) or licensor 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 Microbiology
Bock, Cristin N.
Babu, Subash
Breloer, Minka
Rajamanickam, Anuradha
Boothra, Yukhti
Brunn, Marie-Luise
Kühl, Anja A.
Merle, Roswitha
Löhning, Max
Hartmann, Susanne
Rausch, Sebastian
Th2/1 Hybrid Cells Occurring in Murine and Human Strongyloidiasis Share Effector Functions of Th1 Cells
title Th2/1 Hybrid Cells Occurring in Murine and Human Strongyloidiasis Share Effector Functions of Th1 Cells
title_full Th2/1 Hybrid Cells Occurring in Murine and Human Strongyloidiasis Share Effector Functions of Th1 Cells
title_fullStr Th2/1 Hybrid Cells Occurring in Murine and Human Strongyloidiasis Share Effector Functions of Th1 Cells
title_full_unstemmed Th2/1 Hybrid Cells Occurring in Murine and Human Strongyloidiasis Share Effector Functions of Th1 Cells
title_short Th2/1 Hybrid Cells Occurring in Murine and Human Strongyloidiasis Share Effector Functions of Th1 Cells
title_sort th2/1 hybrid cells occurring in murine and human strongyloidiasis share effector functions of th1 cells
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5476698/
https://www.ncbi.nlm.nih.gov/pubmed/28676845
http://dx.doi.org/10.3389/fcimb.2017.00261
work_keys_str_mv AT bockcristinn th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT babusubash th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT breloerminka th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT rajamanickamanuradha th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT boothrayukhti th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT brunnmarieluise th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT kuhlanjaa th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT merleroswitha th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT lohningmax th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT hartmannsusanne th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells
AT rauschsebastian th21hybridcellsoccurringinmurineandhumanstrongyloidiasisshareeffectorfunctionsofth1cells