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IL-10 from CD4+CD25−Foxp3−CD127− Adaptive Regulatory T Cells Modulates Parasite Clearance and Pathology during Malaria Infection

Couper, Kevin N; Blount, Daniel G; Wilson, Mark S; Hafalla, Julius C; Belkaid, Yasmine; Kamanaka, Masahito; Flavell, Richard A; de Souza, J Brian; Riley, Eleanor M

PLoS Pathogens. 2008;4(2):e1000004.

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Abstract

The outcome of malaria infection is determined, in part, by the balance of pro-inflammatory and regulatory immune responses. Failure to develop an effective pro-inflammatory response can lead to unrestricted parasite replication, whilst failure to regulate this response leads to the development of severe immunopathology. IL-10 and TGF-beta are known to be important components of the regulatory response, but the cellular source of these cytokines is still unknown. Here we have examined the role of natural and adaptive regulatory T cells in the control of malaria infection and find that classical CD4+CD25(hi) (and Foxp3+) regulatory T cells do not significantly influence the outcome of infections with the lethal (17XL) strain of Plasmodium yoelii (PyL). In contrast, we find that adaptive IL-10-producing, CD4+ T cells (which are CD25-, Foxp3-, and CD127- and do not produce Th1, Th2, or Th17 associated cytokines) that are generated during both PyL and non-lethal P. yoelii 17X (PyNL) infections are able to down-regulate pro-inflammatory responses and impede parasite clearance. In summary, we have identified a population of induced Foxp3- regulatory (Tr1) T cells, characterised by production of IL-10 and down regulation of IL-7Ralpha, that modulates the inflammatory response to malaria.

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United States
Volume:
4
Issue:
2
Start page:
e1000004
Digital Object Identifier:
10.1371/journal.ppat.1000004
Pubmed Identifier:
18401464
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Access state:
Active

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Record metadata

Manchester eScholar ID:
uk-ac-man-scw:158628
Created by:
Couper, Kevin
Created:
6th April, 2012, 11:18:31
Last modified by:
Clayton, Leanda
Last modified:
14th February, 2016, 20:22:36

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