CD4+CD25hiFOXP3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with CD4+Tbet+ and CD4+RORγt+ T cells.

BACKGROUND:Children who have been exposed in utero to maternal filarial infection are immunologically less responsive to filarial antigens, have less pathology, and are more susceptible to acquire infection than offspring of uninfected mothers. Moreover children from filaria infected mothers have be...

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Main Authors: Ulysse Ateba-Ngoa, Ghyslain Mombo-Ngoma, Eva Zettlmeissl, Luciën E P M van der Vlugt, Sanne E de Jong, Pierre-Blaise Matsiegui, Michael Ramharter, Peter G Kremsner, Maria Yazdanbakhsh, Ayola Akim Adegnika
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4273973?pdf=render
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spelling doaj-87f06a47c66e4f37a6e9e0a90f6a98842020-11-24T22:00:06ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01912e11463010.1371/journal.pone.0114630CD4+CD25hiFOXP3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with CD4+Tbet+ and CD4+RORγt+ T cells.Ulysse Ateba-NgoaGhyslain Mombo-NgomaEva ZettlmeisslLuciën E P M van der VlugtSanne E de JongPierre-Blaise MatsieguiMichael RamharterPeter G KremsnerMaria YazdanbakhshAyola Akim AdegnikaBACKGROUND:Children who have been exposed in utero to maternal filarial infection are immunologically less responsive to filarial antigens, have less pathology, and are more susceptible to acquire infection than offspring of uninfected mothers. Moreover children from filaria infected mothers have been shown to be less responsive to vaccination as a consequence of an impairment of their immune response. However, it is not well known how in utero exposure to parasite antigens affects cellular immune responses. METHODOLOGY:Here, 30 pregnant women were examined for the presence of microfilaria of Loa loa and Mansonella perstans in peripheral blood. At delivery, cord blood mononuclear cells (CBMC) were obtained and the CD4+T cells were phenotyped by expression of the transcription factors Tbet, RORγt, and FOXP3. RESULTS:No significant difference was observed between newborns from infected versus uninfected mothers in the frequencies of total CD4+T cells and CD4+T cells subsets including CD4+Tbet+, CD4+RORγt+ T and CD4+CD25hiFOXP3+ T cells. However, there was a negative association between CD4+CD25hiFOXP3+T cells and CD4+Tbet+ as well as CD4+RORγt+ T cells in the infected group only (B = -0.242, P = 0.002; B = -0.178, P = 0.013 respectively). CONCLUSION:Our results suggest that filarial infection during pregnancy leads to an expansion of functionally active regulatory T cells that keep TH1 and TH17 in check.http://europepmc.org/articles/PMC4273973?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ulysse Ateba-Ngoa
Ghyslain Mombo-Ngoma
Eva Zettlmeissl
Luciën E P M van der Vlugt
Sanne E de Jong
Pierre-Blaise Matsiegui
Michael Ramharter
Peter G Kremsner
Maria Yazdanbakhsh
Ayola Akim Adegnika
spellingShingle Ulysse Ateba-Ngoa
Ghyslain Mombo-Ngoma
Eva Zettlmeissl
Luciën E P M van der Vlugt
Sanne E de Jong
Pierre-Blaise Matsiegui
Michael Ramharter
Peter G Kremsner
Maria Yazdanbakhsh
Ayola Akim Adegnika
CD4+CD25hiFOXP3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with CD4+Tbet+ and CD4+RORγt+ T cells.
PLoS ONE
author_facet Ulysse Ateba-Ngoa
Ghyslain Mombo-Ngoma
Eva Zettlmeissl
Luciën E P M van der Vlugt
Sanne E de Jong
Pierre-Blaise Matsiegui
Michael Ramharter
Peter G Kremsner
Maria Yazdanbakhsh
Ayola Akim Adegnika
author_sort Ulysse Ateba-Ngoa
title CD4+CD25hiFOXP3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with CD4+Tbet+ and CD4+RORγt+ T cells.
title_short CD4+CD25hiFOXP3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with CD4+Tbet+ and CD4+RORγt+ T cells.
title_full CD4+CD25hiFOXP3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with CD4+Tbet+ and CD4+RORγt+ T cells.
title_fullStr CD4+CD25hiFOXP3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with CD4+Tbet+ and CD4+RORγt+ T cells.
title_full_unstemmed CD4+CD25hiFOXP3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with CD4+Tbet+ and CD4+RORγt+ T cells.
title_sort cd4+cd25hifoxp3+ cells in cord blood of neonates born from filaria infected mother are negatively associated with cd4+tbet+ and cd4+rorγt+ t cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description BACKGROUND:Children who have been exposed in utero to maternal filarial infection are immunologically less responsive to filarial antigens, have less pathology, and are more susceptible to acquire infection than offspring of uninfected mothers. Moreover children from filaria infected mothers have been shown to be less responsive to vaccination as a consequence of an impairment of their immune response. However, it is not well known how in utero exposure to parasite antigens affects cellular immune responses. METHODOLOGY:Here, 30 pregnant women were examined for the presence of microfilaria of Loa loa and Mansonella perstans in peripheral blood. At delivery, cord blood mononuclear cells (CBMC) were obtained and the CD4+T cells were phenotyped by expression of the transcription factors Tbet, RORγt, and FOXP3. RESULTS:No significant difference was observed between newborns from infected versus uninfected mothers in the frequencies of total CD4+T cells and CD4+T cells subsets including CD4+Tbet+, CD4+RORγt+ T and CD4+CD25hiFOXP3+ T cells. However, there was a negative association between CD4+CD25hiFOXP3+T cells and CD4+Tbet+ as well as CD4+RORγt+ T cells in the infected group only (B = -0.242, P = 0.002; B = -0.178, P = 0.013 respectively). CONCLUSION:Our results suggest that filarial infection during pregnancy leads to an expansion of functionally active regulatory T cells that keep TH1 and TH17 in check.
url http://europepmc.org/articles/PMC4273973?pdf=render
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