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PMID: 22914092 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

T cells become licensed in the lung to enter the central nervous system.

Nature ·Vol. 488 ·No. 7413 ·2012-08-30 ·Pages 675-9

Odoardi F, Sie C, Streyl K, Ulaganathan VK, Schläger C, Lodygin D, Heckelsmiller K, Nietfeld W, Ellwart J, Klinkert WE, Lottaz C, Nosov M, Brinkmann V, Spang R, Lehrach H, Vingron M, Wekerle H, Flügel-Koch C, Flügel A

Abstract

The blood–brain barrier (BBB) and the environment of the central nervous system (CNS) guard the nervous tissue from peripheral immune cells. In the autoimmune disease multiple sclerosis, myelin-reactive T-cell blasts are thought to transgress the BBB and create a pro-inflammatory environment in the CNS, thereby making possible a second autoimmune attack that starts from the leptomeningeal vessels and progresses into the parenchyma. Using a Lewis rat model of experimental autoimmune encephalomyelitis, we show here that contrary to the expectations of this concept, T-cell blasts do not efficiently enter the CNS and are not required to prepare the BBB for immune-cell recruitment. Instead, intravenously transferred T-cell blasts gain the capacity to enter the CNS after residing transiently within the lung tissues. Inside the lung tissues, they move along and within the airways to bronchus-associated lymphoid tissues and lung-draining mediastinal lymph nodes before they enter the blood circulation from where they reach the CNS. Effector T cells transferred directly into the airways showed a similar migratory pattern and retained their full pathogenicity. On their way the T cells fundamentally reprogrammed their gene-expression profile, characterized by downregulation of their activation program and upregulation of cellular locomotion molecules together with chemokine and adhesion receptors. The adhesion receptors include ninjurin 1, which participates in T-cell intravascular crawling on cerebral blood vessels. We detected that the lung constitutes a niche not only for activated T cells but also for resting myelin-reactive memory T cells. After local stimulation in the lung, these cells strongly proliferate and, after assuming migratory properties, enter the CNS and induce paralytic disease. The lung could therefore contribute to the activation of potentially autoaggressive T cells and their transition to a migratory mode as a prerequisite to entering their target tissues and inducing autoimmune disease.

MeSH Terms
Adoptive Transfer Animals Autoimmunity/immunology Blood-Brain Barrier/immunology Brain/cytology,immunology,pathology Cell Adhesion Molecules, Neuronal/metabolism Cell Movement Cerebrovascular Circulation Disease Models, Animal Encephalomyelitis, Autoimmune, Experimental/immunology,pathology Gene Expression Profiling Immunologic Memory Lung/cytology,immunology,pathology Lymphocyte Activation Myelin Sheath/immunology Nerve Growth Factors/metabolism Rats Rats, Inbred Lew T-Lymphocytes/cytology,immunology,metabolism,pathology
Chemicals
Cell Adhesion Molecules, Neuronal Nerve Growth Factors Ninj1 protein, rat
Authors & Affiliations
19 authors, click to expand affiliations / ORCID
Odoardi Francesca
Institute for Multiple Sclerosis Research, Department of Neuroimmunology, Gemeinnützige Hertie-Stiftung and University Medical Centre Göttingen, 37073 Göttingen, Germany.
Sie Christopher
Streyl Kristina
Ulaganathan Vijay K
Schläger Christian
Lodygin Dmitri
Heckelsmiller Klaus
Nietfeld Wilfried
Ellwart Joachim
Klinkert Wolfgang E F
Lottaz Claudio
Nosov Mikhail
Brinkmann Volker
Spang Rainer
Lehrach Hans
Vingron Martin
Wekerle Hartmut
Flügel-Koch Cassandra
Flügel Alexander
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Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2012-08-30
Pages
675-9
Language
English
Region
England
NLM ID
0410462
Subset
IM
Databases
GEO
Corrections
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