IFN-γ-Producing CD4+ T Cells Promote Experimental Cerebral Malaria by Modulating CD8+ T Cell Accumulation within the Brain

被引:143
作者
Villegas-Mendez, Ana [1 ]
Greig, Rachel [1 ]
Shaw, Tovah N. [1 ]
de Souza, J. Brian [1 ,2 ]
Findlay, Emily Gwyer [1 ]
Stumhofer, Jason S. [3 ]
Hafalla, Julius C. R. [1 ]
Blount, Daniel G. [1 ]
Hunter, Christopher A. [3 ]
Riley, Eleanor M. [1 ]
Couper, Kevin N. [1 ]
机构
[1] Univ London London Sch Hyg & Trop Med, Dept Immunol & Infect, Fac Infect & Trop Dis, London WC1E 7HT, England
[2] UCL, Sch Med, Dept Immunol & Mol Pathol, London W1T 4JF, England
[3] Univ Penn, Dept Pathobiol, Philadelphia, PA 19104 USA
基金
英国医学研究理事会; 英国生物技术与生命科学研究理事会; 英国惠康基金;
关键词
CENTRAL-NERVOUS-SYSTEM; TUMOR-NECROSIS-FACTOR; INTERFERON-GAMMA; AUTOIMMUNE ENCEPHALOMYELITIS; MICROARRAY ANALYSIS; CUTTING EDGE; BLOOD-STAGE; INFECTION; PATHOGENESIS; MECHANISMS;
D O I
10.4049/jimmunol.1200688
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
It is well established that IFN-gamma is required for the development of experimental cerebral malaria (ECM) during Plasmodium berghei ANKA infection of C57BL/6 mice. However, the temporal and tissue-specific cellular sources of IFN-gamma during P. berghei ANKA infection have not been investigated, and it is not known whether IFN-gamma production by a single cell type in isolation can induce cerebral pathology. In this study, using IFN-gamma reporter mice, we show that NK cells dominate the IFN-gamma response during the early stages of infection in the brain, but not in the spleen, before being replaced by CD4(+) and CD8(+) T cells. Importantly, we demonstrate that IFN-gamma-producing CD4(+) T cells, but not innate or CD8(+) T cells, can promote the development of ECM in normally resistant IFN-gamma(-/-) mice infected with P. berghei ANKA. Adoptively transferred wild-type CD4(+) T cells accumulate within the spleen, lung, and brain of IFN-gamma(-/-) mice and induce ECM through active IFN-gamma secretion, which increases the accumulation of endogenous IFN-gamma(-/-) CD8(+) T cells within the brain. Depletion of endogenous IFN-gamma(-/-) CD8(+) T cells abrogates the ability of wild-type CD4(+) T cells to promote ECM. Finally, we show that IFN-gamma production, specifically by CD4(+) T cells, is sufficient to induce expression of CXCL9 and CXCL10 within the brain, providing a mechanistic basis for the enhanced CD8(+) T cell accumulation. To our knowledge, these observations demonstrate, for the first time, the importance of and pathways by which IFN-gamma-producing CD4(+) T cells promote the development of ECM during P. berghei ANKA infection. The Journal of Immunology, 2012, 189: 968-979.
引用
收藏
页码:968 / 979
页数:12
相关论文
共 53 条
[1]  
Amani V, 2000, EUR J IMMUNOL, V30, P1646, DOI 10.1002/1521-4141(200006)30:6<1646::AID-IMMU1646>3.0.CO
[2]  
2-0
[3]   Immune-Mediated Mechanisms of Parasite Tissue Sequestration during Experimental Cerebral Malaria [J].
Amante, Fiona H. ;
Haque, Ashraful ;
Stanley, Amanda C. ;
Rivera, Fabian de Labastida ;
Randall, Louise M. ;
Wilson, Yana A. ;
Yeo, Gladys ;
Pieper, Christian ;
Crabb, Brendan S. ;
de Koning-Ward, Tania F. ;
Lundie, Rachel J. ;
Good, Michael F. ;
Pinzon-Charry, Alberto ;
Pearson, Mark S. ;
Duke, Mary G. ;
McManus, Donald P. ;
Loukas, Alex ;
Hill, Geoff R. ;
Engwerda, Christian R. .
JOURNAL OF IMMUNOLOGY, 2010, 185 (06) :3632-3642
[4]   Accumulation of Plasmodium berghei-Infected Red Blood Cells in the Brain Is Crucial for the Development of Cerebral Malaria in Mice [J].
Baptista, Fernanda G. ;
Pamplona, Ana ;
Pena, Ana C. ;
Mota, Maria M. ;
Pied, Sylviane ;
Vigario, Ana M. .
INFECTION AND IMMUNITY, 2010, 78 (09) :4033-4039
[5]   On the pathogenic role of brain-sequestered αβ CD8+ T cells in experimental cerebral malarial [J].
Belnoue, E ;
Kayibanda, M ;
Vigario, AM ;
Deschemin, JC ;
van Rooijen, N ;
Viguier, M ;
Snounou, G ;
Rénia, L .
JOURNAL OF IMMUNOLOGY, 2002, 169 (11) :6369-6375
[6]   Control of pathogenic CD8+ T cell migration to the brain by IFN-γ during experimental cerebral malaria [J].
Belnoue, E. ;
Potter, S. M. ;
Rosa, D. S. ;
Mauduit, M. ;
Gruener, A. C. ;
Kayibanda, M. ;
Mitchell, A. J. ;
Hunt, N. H. ;
Renia, L. .
PARASITE IMMUNOLOGY, 2008, 30 (10) :544-553
[7]   Reciprocal developmental pathways for the generation of pathogenic effector TH17 and regulatory T cells [J].
Bettelli, E ;
Carrier, YJ ;
Gao, WD ;
Korn, T ;
Strom, TB ;
Oukka, M ;
Weiner, HL ;
Kuchroo, VK .
NATURE, 2006, 441 (7090) :235-238
[8]   Chemokine receptor CXCR3 and its ligands CXCL9 and CXCL10 are required for the development of murine cerebral malaria [J].
Campanella, Gabriele S. V. ;
Tager, Andrew M. ;
El Khoury, Joseph K. ;
Thomas, Seddon Y. ;
Abrazinski, Tabitha A. ;
Manice, Lindsay A. ;
Colvin, Richard A. ;
Lustert, Andrew D. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (12) :4814-4819
[9]   CD8+ T Cells and IFN-γ Mediate the Time-Dependent Accumulation of Infected Red Blood Cells in Deep Organs during Experimental Cerebral Malaria [J].
Claser, Carla ;
Malleret, Benoit ;
Gun, Sin Yee ;
Wong, Alicia Yoke Wei ;
Chang, Zi Wei ;
Teo, Pearline ;
See, Peter Chi Ee ;
Howland, Shanshan Wu ;
Ginhoux, Florent ;
Renia, Laurent .
PLOS ONE, 2011, 6 (04)
[10]   Persistent cognitive and motor deficits after successful antimalarial treatment in murine cerebral malaria [J].
Dai, Minxian ;
Reznik, Sandra E. ;
Spray, David C. ;
Weiss, Louis M. ;
Tanowitz, Herbert B. ;
Gulinello, Maria ;
Desruisseaux, Mahalia S. .
MICROBES AND INFECTION, 2010, 12 (14-15) :1198-1207