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Vitamin D differentially modulates effector and regulatory T-cell migration across the blood-brain barrier

Soldati, S.; Bar, A.; Blumer, F.; Pal, A.; Kari, S.; Vladymyrov, M.; Danial, A.; Nishihara, H.; Killick, J.; Mossu, A.; Bouillet, E.; Barcos, S.; Galoppin, M.; Rosito, M.; Deutsch, U.; Sallusto, F.; Sospedra, M.; Martin, R.; Gosselet, F.; McGath, J.; Thouvenot, E.; Astier, A.; Engelhardt, B.

2025-12-12 immunology
10.64898/2025.12.09.692504 bioRxiv
Show abstract

Multiple sclerosis (MS) is an inflammatory disease of the CNS influenced by a combination of genetic predisposition and environmental factors. Vitamin D (VitD) deficiency is considered a major risk factor for MS. While VitD is associated with immunomodulatory roles, the exact mechanisms by which VitD protects from disease are still largely unknown. CD4 T cells play a key role in MS pathogenesis with autoimmune effector T cells (Teff) infiltrating the CNS across the blood-brain barrier (BBB) and regulatory T cells (Treg) displaying impaired functions. Here we show that treatment of human CD4 T cells with the active form of VitD (1,25-Dihydroxyvitamin D3; 1,25(OH)2D3) decreased cell-surface expression of 4{beta}1- and L{beta}2-integrins on Teff but not Treg and reduced Teff adhesion to their endothelial ligands VCAM-1 and ICAM-1. By employing live cell imaging, we observed that VitD treatment reduced arrest of Teff but not Treg to the BBB as well as ICAM-1 and VCAM-1 under physiological flow in vitro and differentially affected post-arrest behaviour of Teff versus Treg on the BBB under physiological flow. Furthermore, VitD treatment favoured the migration of Treg over Teff across the BBB under static and flow conditions in vitro. In vivo live cell imaging showed that VitD reduced T cell arrest on the inflamed BBB during autoimmune neuroinflammation. Finally, VitD also reduced expression of integrins mediating CNS homing on pathogenic CD4 T cells isolated from the CSF of persons with MS (PwMS). As VitD treatment did not alter barrier properties or adhesion molecule profile of our BBB model we propose a beneficial effect of VitD supplementation in PwMS by reducing CNS trafficking of pro-inflammatory T cells while leaving CNS entry of Treg unaffected.

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