Cargando…
VLA-4 blockade promotes differential routes into human CNS involving PSGL-1 rolling of T cells and MCAM-adhesion of T(H)17 cells
The focus of this study is the characterization of human T cell blood–brain barrier migration and corresponding molecular trafficking signatures. We examined peripheral blood and cerebrospinal fluid immune cells from patients under long-term anti–very late antigen-4 (VLA-4)/natalizumab therapy (LTNT...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Rockefeller University Press
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4144733/ https://www.ncbi.nlm.nih.gov/pubmed/25135296 http://dx.doi.org/10.1084/jem.20140540 |
_version_ | 1782332067860709376 |
---|---|
author | Schneider-Hohendorf, Tilman Rossaint, Jan Mohan, Hema Böning, Daniel Breuer, Johanna Kuhlmann, Tanja Gross, Catharina C. Flanagan, Ken Sorokin, Lydia Vestweber, Dietmar Zarbock, Alexander Schwab, Nicholas Wiendl, Heinz |
author_facet | Schneider-Hohendorf, Tilman Rossaint, Jan Mohan, Hema Böning, Daniel Breuer, Johanna Kuhlmann, Tanja Gross, Catharina C. Flanagan, Ken Sorokin, Lydia Vestweber, Dietmar Zarbock, Alexander Schwab, Nicholas Wiendl, Heinz |
author_sort | Schneider-Hohendorf, Tilman |
collection | PubMed |
description | The focus of this study is the characterization of human T cell blood–brain barrier migration and corresponding molecular trafficking signatures. We examined peripheral blood and cerebrospinal fluid immune cells from patients under long-term anti–very late antigen-4 (VLA-4)/natalizumab therapy (LTNT) and from CNS specimens. LTNT patients’ cerebrospinal fluid T cells exhibited healthy central-/effector-memory ratios, but lacked CD49d and showed enhanced myeloma cell adhesion molecule (MCAM) expression. LTNT led to an increase of PSGL-1 expression on peripheral T cells. Although vascular cell adhesion molecule-1 (VLA-4 receptor) was expressed at all CNS barriers, P-selectin (PSGL-1-receptor) was mainly detected at the choroid plexus. Accordingly, in vitro experiments under physiological flow conditions using primary human endothelial cells and LTNT patients’ T cells showed increased PSGL-1–mediated rolling and residual adhesion, even under VLA-4 blockade. Adhesion of MCAM(+)/T(H)17 cells was not affected by VLA-4 blocking alone, but was abrogated when both VLA-4 and MCAM were inhibited. Consistent with these data, MCAM(+) cells were detected in white matter lesions, and in gray matter of multiple sclerosis patients. Our data indicate that lymphocyte trafficking into the CNS under VLA-4 blockade can occur by using the alternative adhesion molecules, PSGL-1 and MCAM, the latter representing an exclusive pathway for T(H)17 cells to migrate over the blood–brain barrier. |
format | Online Article Text |
id | pubmed-4144733 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | The Rockefeller University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-41447332015-02-25 VLA-4 blockade promotes differential routes into human CNS involving PSGL-1 rolling of T cells and MCAM-adhesion of T(H)17 cells Schneider-Hohendorf, Tilman Rossaint, Jan Mohan, Hema Böning, Daniel Breuer, Johanna Kuhlmann, Tanja Gross, Catharina C. Flanagan, Ken Sorokin, Lydia Vestweber, Dietmar Zarbock, Alexander Schwab, Nicholas Wiendl, Heinz J Exp Med Article The focus of this study is the characterization of human T cell blood–brain barrier migration and corresponding molecular trafficking signatures. We examined peripheral blood and cerebrospinal fluid immune cells from patients under long-term anti–very late antigen-4 (VLA-4)/natalizumab therapy (LTNT) and from CNS specimens. LTNT patients’ cerebrospinal fluid T cells exhibited healthy central-/effector-memory ratios, but lacked CD49d and showed enhanced myeloma cell adhesion molecule (MCAM) expression. LTNT led to an increase of PSGL-1 expression on peripheral T cells. Although vascular cell adhesion molecule-1 (VLA-4 receptor) was expressed at all CNS barriers, P-selectin (PSGL-1-receptor) was mainly detected at the choroid plexus. Accordingly, in vitro experiments under physiological flow conditions using primary human endothelial cells and LTNT patients’ T cells showed increased PSGL-1–mediated rolling and residual adhesion, even under VLA-4 blockade. Adhesion of MCAM(+)/T(H)17 cells was not affected by VLA-4 blocking alone, but was abrogated when both VLA-4 and MCAM were inhibited. Consistent with these data, MCAM(+) cells were detected in white matter lesions, and in gray matter of multiple sclerosis patients. Our data indicate that lymphocyte trafficking into the CNS under VLA-4 blockade can occur by using the alternative adhesion molecules, PSGL-1 and MCAM, the latter representing an exclusive pathway for T(H)17 cells to migrate over the blood–brain barrier. The Rockefeller University Press 2014-08-25 /pmc/articles/PMC4144733/ /pubmed/25135296 http://dx.doi.org/10.1084/jem.20140540 Text en © 2014 Schneider-Hohendorf et al. This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 3.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/3.0/). |
spellingShingle | Article Schneider-Hohendorf, Tilman Rossaint, Jan Mohan, Hema Böning, Daniel Breuer, Johanna Kuhlmann, Tanja Gross, Catharina C. Flanagan, Ken Sorokin, Lydia Vestweber, Dietmar Zarbock, Alexander Schwab, Nicholas Wiendl, Heinz VLA-4 blockade promotes differential routes into human CNS involving PSGL-1 rolling of T cells and MCAM-adhesion of T(H)17 cells |
title | VLA-4 blockade promotes differential routes into human CNS involving PSGL-1 rolling of T cells and MCAM-adhesion of T(H)17 cells |
title_full | VLA-4 blockade promotes differential routes into human CNS involving PSGL-1 rolling of T cells and MCAM-adhesion of T(H)17 cells |
title_fullStr | VLA-4 blockade promotes differential routes into human CNS involving PSGL-1 rolling of T cells and MCAM-adhesion of T(H)17 cells |
title_full_unstemmed | VLA-4 blockade promotes differential routes into human CNS involving PSGL-1 rolling of T cells and MCAM-adhesion of T(H)17 cells |
title_short | VLA-4 blockade promotes differential routes into human CNS involving PSGL-1 rolling of T cells and MCAM-adhesion of T(H)17 cells |
title_sort | vla-4 blockade promotes differential routes into human cns involving psgl-1 rolling of t cells and mcam-adhesion of t(h)17 cells |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4144733/ https://www.ncbi.nlm.nih.gov/pubmed/25135296 http://dx.doi.org/10.1084/jem.20140540 |
work_keys_str_mv | AT schneiderhohendorftilman vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT rossaintjan vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT mohanhema vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT boningdaniel vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT breuerjohanna vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT kuhlmanntanja vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT grosscatharinac vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT flanaganken vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT sorokinlydia vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT vestweberdietmar vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT zarbockalexander vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT schwabnicholas vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells AT wiendlheinz vla4blockadepromotesdifferentialroutesintohumancnsinvolvingpsgl1rollingoftcellsandmcamadhesionofth17cells |