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CD4(+)NKG2D(+) T Cells Exhibit Enhanced Migratory and Encephalitogenic Properties in Neuroinflammation

Migration of encephalitogenic CD4(+) T lymphocytes across the blood-brain barrier is an essential step in the pathogenesis of multiple sclerosis (MS). We here demonstrate that expression of the co-stimulatory receptor NKG2D defines a subpopulation of CD4(+) T cells with elevated levels of markers fo...

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Autores principales: Ruck, Tobias, Bittner, Stefan, Gross, Catharina C., Breuer, Johanna, Albrecht, Stefanie, Korr, Sabrina, Göbel, Kerstin, Pankratz, Susann, Henschel, Christian M., Schwab, Nicholas, Staszewski, Ori, Prinz, Marco, Kuhlmann, Tanja, Meuth, Sven G., Wiendl, Heinz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3839937/
https://www.ncbi.nlm.nih.gov/pubmed/24282598
http://dx.doi.org/10.1371/journal.pone.0081455
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author Ruck, Tobias
Bittner, Stefan
Gross, Catharina C.
Breuer, Johanna
Albrecht, Stefanie
Korr, Sabrina
Göbel, Kerstin
Pankratz, Susann
Henschel, Christian M.
Schwab, Nicholas
Staszewski, Ori
Prinz, Marco
Kuhlmann, Tanja
Meuth, Sven G.
Wiendl, Heinz
author_facet Ruck, Tobias
Bittner, Stefan
Gross, Catharina C.
Breuer, Johanna
Albrecht, Stefanie
Korr, Sabrina
Göbel, Kerstin
Pankratz, Susann
Henschel, Christian M.
Schwab, Nicholas
Staszewski, Ori
Prinz, Marco
Kuhlmann, Tanja
Meuth, Sven G.
Wiendl, Heinz
author_sort Ruck, Tobias
collection PubMed
description Migration of encephalitogenic CD4(+) T lymphocytes across the blood-brain barrier is an essential step in the pathogenesis of multiple sclerosis (MS). We here demonstrate that expression of the co-stimulatory receptor NKG2D defines a subpopulation of CD4(+) T cells with elevated levels of markers for migration, activation, and cytolytic capacity especially when derived from MS patients. Furthermore, CD4(+)NKG2D(+) cells produce high levels of proinflammatory IFN-γ and IL-17 upon stimulation. NKG2D promotes the capacity of CD4(+)NKG2D(+) cells to migrate across endothelial cells in an in vitro model of the blood-brain barrier. CD4(+)NKG2D(+) T cells are enriched in the cerebrospinal fluid of MS patients, and a significant number of CD4(+) T cells in MS lesions coexpress NKG2D. We further elucidated the role of CD4(+)NKG2D(+) T cells in the mouse system. NKG2D blockade restricted central nervous system migration of T lymphocytes in vivo, leading to a significant decrease in the clinical and pathologic severity of experimental autoimmune encephalomyelitis, an animal model of MS. Blockade of NKG2D reduced killing of cultivated mouse oligodendrocytes by activated CD4(+) T cells. Taken together, we identify CD4(+)NKG2D(+) cells as a subpopulation of T helper cells with enhanced migratory, encephalitogenic and cytotoxic properties involved in inflammatory CNS lesion development.
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spelling pubmed-38399372013-11-26 CD4(+)NKG2D(+) T Cells Exhibit Enhanced Migratory and Encephalitogenic Properties in Neuroinflammation Ruck, Tobias Bittner, Stefan Gross, Catharina C. Breuer, Johanna Albrecht, Stefanie Korr, Sabrina Göbel, Kerstin Pankratz, Susann Henschel, Christian M. Schwab, Nicholas Staszewski, Ori Prinz, Marco Kuhlmann, Tanja Meuth, Sven G. Wiendl, Heinz PLoS One Research Article Migration of encephalitogenic CD4(+) T lymphocytes across the blood-brain barrier is an essential step in the pathogenesis of multiple sclerosis (MS). We here demonstrate that expression of the co-stimulatory receptor NKG2D defines a subpopulation of CD4(+) T cells with elevated levels of markers for migration, activation, and cytolytic capacity especially when derived from MS patients. Furthermore, CD4(+)NKG2D(+) cells produce high levels of proinflammatory IFN-γ and IL-17 upon stimulation. NKG2D promotes the capacity of CD4(+)NKG2D(+) cells to migrate across endothelial cells in an in vitro model of the blood-brain barrier. CD4(+)NKG2D(+) T cells are enriched in the cerebrospinal fluid of MS patients, and a significant number of CD4(+) T cells in MS lesions coexpress NKG2D. We further elucidated the role of CD4(+)NKG2D(+) T cells in the mouse system. NKG2D blockade restricted central nervous system migration of T lymphocytes in vivo, leading to a significant decrease in the clinical and pathologic severity of experimental autoimmune encephalomyelitis, an animal model of MS. Blockade of NKG2D reduced killing of cultivated mouse oligodendrocytes by activated CD4(+) T cells. Taken together, we identify CD4(+)NKG2D(+) cells as a subpopulation of T helper cells with enhanced migratory, encephalitogenic and cytotoxic properties involved in inflammatory CNS lesion development. Public Library of Science 2013-11-25 /pmc/articles/PMC3839937/ /pubmed/24282598 http://dx.doi.org/10.1371/journal.pone.0081455 Text en © 2013 Ruck et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ruck, Tobias
Bittner, Stefan
Gross, Catharina C.
Breuer, Johanna
Albrecht, Stefanie
Korr, Sabrina
Göbel, Kerstin
Pankratz, Susann
Henschel, Christian M.
Schwab, Nicholas
Staszewski, Ori
Prinz, Marco
Kuhlmann, Tanja
Meuth, Sven G.
Wiendl, Heinz
CD4(+)NKG2D(+) T Cells Exhibit Enhanced Migratory and Encephalitogenic Properties in Neuroinflammation
title CD4(+)NKG2D(+) T Cells Exhibit Enhanced Migratory and Encephalitogenic Properties in Neuroinflammation
title_full CD4(+)NKG2D(+) T Cells Exhibit Enhanced Migratory and Encephalitogenic Properties in Neuroinflammation
title_fullStr CD4(+)NKG2D(+) T Cells Exhibit Enhanced Migratory and Encephalitogenic Properties in Neuroinflammation
title_full_unstemmed CD4(+)NKG2D(+) T Cells Exhibit Enhanced Migratory and Encephalitogenic Properties in Neuroinflammation
title_short CD4(+)NKG2D(+) T Cells Exhibit Enhanced Migratory and Encephalitogenic Properties in Neuroinflammation
title_sort cd4(+)nkg2d(+) t cells exhibit enhanced migratory and encephalitogenic properties in neuroinflammation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3839937/
https://www.ncbi.nlm.nih.gov/pubmed/24282598
http://dx.doi.org/10.1371/journal.pone.0081455
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