Given the global impact of persistent infections on the human population, it is of the utmost importance to devise strategies to noncytopathically purge tissues of infectious agents. The central nervous system (CNS) poses a unique challenge when considering such strategies, as it is an immunologically specialized compartment that contains a nonreplicative cell population. Administration of exogenously derived pathogen-specific memory T cells (referred to as adoptive immunotherapy) to mice burdened with a persistent lymphocytic choriomeningitis virus (LCMV) infection from birth results in eradication of the pathogen from all tissues, including the CNS. In this study, we sought mechanistic insights into this highly successful therapeutic approach. By monitoring the migration of traceable LCMV-specific memory CD8+ T cells after immunotherapy, it was revealed that cytotoxic T lymphocytes (CTLs) distributed widely throughout the CNS compartment early after immunotherapy, which resulted in a dramatic elevation in the activity of CNS antigen-presenting cells (APCs). Immunotherapy induced microglia activation as well as the recruitment of macrophages and dendritic cells (DCs) into the brain parenchyma. However, DCs emerged as the only CNS APC population capable of inducing memory CTLs to preferentially produce the antiviral cytokine tumor necrosis factor-α, a cytokine demonstrated to be required for successful immunotherapeutic clearance. DCs were also found to be an essential element of the immunotherapeutic process because in their absence, memory T cells failed to undergo secondary expansion, and viral clearance was not attained in the CNS. These experiments underscore the importance of DCs in the immunotherapeutic clearance of a persistent viral infection and suggest that strategies to elevate the activation/migration of DCs (especially within the CNS) may facilitate pathogen clearance.
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7 August 2006
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Article|
July 17 2006
Adoptive immunotherapy induces CNS dendritic cell recruitment and antigen presentation during clearance of a persistent viral infection
Henning Lauterbach,
Henning Lauterbach
1Molecular and Integrative Neurosciences Department
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Elina I. Zuniga,
Elina I. Zuniga
1Molecular and Integrative Neurosciences Department
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Phi Truong,
Phi Truong
1Molecular and Integrative Neurosciences Department
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Michael B.A. Oldstone,
Michael B.A. Oldstone
1Molecular and Integrative Neurosciences Department
2Department of Infectology,
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Dorian B. McGavern
Dorian B. McGavern
1Molecular and Integrative Neurosciences Department
3Harold L. Dorris Neurological Research Institute, The Scripps Research Institute, La Jolla, CA 92037
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Henning Lauterbach
1Molecular and Integrative Neurosciences Department
Elina I. Zuniga
1Molecular and Integrative Neurosciences Department
Phi Truong
1Molecular and Integrative Neurosciences Department
Michael B.A. Oldstone
1Molecular and Integrative Neurosciences Department
2Department of Infectology,
Dorian B. McGavern
1Molecular and Integrative Neurosciences Department
3Harold L. Dorris Neurological Research Institute, The Scripps Research Institute, La Jolla, CA 92037
CORRESPONDENCE Dorian B. McGavern: [email protected]
Abbreviations used: ANOVA, analysis of variance; CNS, central nervous system; DT, diphtheria toxin; DTR, DT receptor; GP, glycoprotein; LCMV, lymphocytic choriomeningitis virus; tg, transgenic.
H. Lauterbach and E.I. Zuniga contributed equally to this paper.
Received:
January 03 2006
Accepted:
June 20 2006
Online ISSN: 1540-9538
Print ISSN: 0022-1007
The Rockefeller University Press
2006
J Exp Med (2006) 203 (8): 1963–1975.
Article history
Received:
January 03 2006
Accepted:
June 20 2006
Citation
Henning Lauterbach, Elina I. Zuniga, Phi Truong, Michael B.A. Oldstone, Dorian B. McGavern; Adoptive immunotherapy induces CNS dendritic cell recruitment and antigen presentation during clearance of a persistent viral infection . J Exp Med 7 August 2006; 203 (8): 1963–1975. doi: https://doi.org/10.1084/jem.20060039
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