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LFA-1 Controls Th1 and Th17 Motility Behavior in the Inflamed Central Nervous System

Leukocyte trafficking is a key event during autoimmune and inflammatory responses. The subarachnoid space (SAS) and cerebrospinal fluid are major routes for the migration of encephalitogenic T cells into the central nervous system (CNS) during experimental autoimmune encephalomyelitis (EAE), the ani...

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Autores principales: Dusi, Silvia, Angiari, Stefano, Pietronigro, Enrica Caterina, Lopez, Nicola, Angelini, Gabriele, Zenaro, Elena, Della Bianca, Vittorina, Tosadori, Gabriele, Paris, Francesca, Amoruso, Antonella, Carlucci, Tommaso, Constantin, Gabriela, Rossi, Barbara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6813462/
https://www.ncbi.nlm.nih.gov/pubmed/31681316
http://dx.doi.org/10.3389/fimmu.2019.02436
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author Dusi, Silvia
Angiari, Stefano
Pietronigro, Enrica Caterina
Lopez, Nicola
Angelini, Gabriele
Zenaro, Elena
Della Bianca, Vittorina
Tosadori, Gabriele
Paris, Francesca
Amoruso, Antonella
Carlucci, Tommaso
Constantin, Gabriela
Rossi, Barbara
author_facet Dusi, Silvia
Angiari, Stefano
Pietronigro, Enrica Caterina
Lopez, Nicola
Angelini, Gabriele
Zenaro, Elena
Della Bianca, Vittorina
Tosadori, Gabriele
Paris, Francesca
Amoruso, Antonella
Carlucci, Tommaso
Constantin, Gabriela
Rossi, Barbara
author_sort Dusi, Silvia
collection PubMed
description Leukocyte trafficking is a key event during autoimmune and inflammatory responses. The subarachnoid space (SAS) and cerebrospinal fluid are major routes for the migration of encephalitogenic T cells into the central nervous system (CNS) during experimental autoimmune encephalomyelitis (EAE), the animal model of multiple sclerosis, and are sites of T cell activation before the invasion of CNS parenchyma. In particular, autoreactive Th1 and Th17 cell trafficking and reactivation in the CNS are required for the pathogenesis of EAE. However, the molecular mechanisms controlling T cell dynamics during EAE are unclear. We used two-photon laser microscopy to show that autoreactive Th1 and Th17 cells display distinct motility behavior within the SAS in the spinal cords of mice immunized with the myelin oligodendrocyte glycoprotein peptide MOG(35−55). Th1 cells showed a strong directional bias at the disease peak, moving in a straight line and covering long distances, whereas Th17 cells exhibited more constrained motility. The dynamics of both Th1 and Th17 cells were strongly affected by blocking the integrin LFA-1, which interfered with the deformability and biomechanics of Th1 but not Th17 cells. The intrathecal injection of a blocking anti-LFA-1 antibody at the onset of disease significantly inhibited EAE progression and also strongly reduced neuro-inflammation in the immunized mice. Our results show that LFA-1 plays a pivotal role in T cell motility during EAE and suggest that interfering with the molecular mechanisms controlling T cell motility can help to reduce the pathogenic potential of autoreactive lymphocytes.
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spelling pubmed-68134622019-11-01 LFA-1 Controls Th1 and Th17 Motility Behavior in the Inflamed Central Nervous System Dusi, Silvia Angiari, Stefano Pietronigro, Enrica Caterina Lopez, Nicola Angelini, Gabriele Zenaro, Elena Della Bianca, Vittorina Tosadori, Gabriele Paris, Francesca Amoruso, Antonella Carlucci, Tommaso Constantin, Gabriela Rossi, Barbara Front Immunol Immunology Leukocyte trafficking is a key event during autoimmune and inflammatory responses. The subarachnoid space (SAS) and cerebrospinal fluid are major routes for the migration of encephalitogenic T cells into the central nervous system (CNS) during experimental autoimmune encephalomyelitis (EAE), the animal model of multiple sclerosis, and are sites of T cell activation before the invasion of CNS parenchyma. In particular, autoreactive Th1 and Th17 cell trafficking and reactivation in the CNS are required for the pathogenesis of EAE. However, the molecular mechanisms controlling T cell dynamics during EAE are unclear. We used two-photon laser microscopy to show that autoreactive Th1 and Th17 cells display distinct motility behavior within the SAS in the spinal cords of mice immunized with the myelin oligodendrocyte glycoprotein peptide MOG(35−55). Th1 cells showed a strong directional bias at the disease peak, moving in a straight line and covering long distances, whereas Th17 cells exhibited more constrained motility. The dynamics of both Th1 and Th17 cells were strongly affected by blocking the integrin LFA-1, which interfered with the deformability and biomechanics of Th1 but not Th17 cells. The intrathecal injection of a blocking anti-LFA-1 antibody at the onset of disease significantly inhibited EAE progression and also strongly reduced neuro-inflammation in the immunized mice. Our results show that LFA-1 plays a pivotal role in T cell motility during EAE and suggest that interfering with the molecular mechanisms controlling T cell motility can help to reduce the pathogenic potential of autoreactive lymphocytes. Frontiers Media S.A. 2019-10-18 /pmc/articles/PMC6813462/ /pubmed/31681316 http://dx.doi.org/10.3389/fimmu.2019.02436 Text en Copyright © 2019 Dusi, Angiari, Pietronigro, Lopez, Angelini, Zenaro, Della Bianca, Tosadori, Paris, Amoruso, Carlucci, Constantin and Rossi. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Dusi, Silvia
Angiari, Stefano
Pietronigro, Enrica Caterina
Lopez, Nicola
Angelini, Gabriele
Zenaro, Elena
Della Bianca, Vittorina
Tosadori, Gabriele
Paris, Francesca
Amoruso, Antonella
Carlucci, Tommaso
Constantin, Gabriela
Rossi, Barbara
LFA-1 Controls Th1 and Th17 Motility Behavior in the Inflamed Central Nervous System
title LFA-1 Controls Th1 and Th17 Motility Behavior in the Inflamed Central Nervous System
title_full LFA-1 Controls Th1 and Th17 Motility Behavior in the Inflamed Central Nervous System
title_fullStr LFA-1 Controls Th1 and Th17 Motility Behavior in the Inflamed Central Nervous System
title_full_unstemmed LFA-1 Controls Th1 and Th17 Motility Behavior in the Inflamed Central Nervous System
title_short LFA-1 Controls Th1 and Th17 Motility Behavior in the Inflamed Central Nervous System
title_sort lfa-1 controls th1 and th17 motility behavior in the inflamed central nervous system
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6813462/
https://www.ncbi.nlm.nih.gov/pubmed/31681316
http://dx.doi.org/10.3389/fimmu.2019.02436
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