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Full spectrum of vitamin D immunomodulation in multiple sclerosis: mechanisms and therapeutic implications

Manon Galoppin, Saniya Kari, Sasha Soldati, Arindam Pal, Manon Rival, Britta Engelhardt, Anne Astier, Éric Thouvenot

2022Brain Communications77 citationsDOIOpen Access PDF

Abstract

experiments, animal models and analysis of human samples from randomized controlled trials provide comprehensive data illustrating the pleiotropic actions of Vitamin D on the immune system. They globally result in immunomodulation by decreasing differentiation of effector T and B cells while promoting regulatory subsets. Vitamin D also modulates innate immune cells such as macrophages, monocytes and dendritic cells, and acts at the level of the blood-brain barrier reducing immune cell trafficking. Vitamin D exerts additional activity within the central nervous system reducing microglial and astrocytic activation. The immunomodulatory role of Vitamin D detected in animal models of multiple sclerosis has suggested its potential therapeutic use for treating multiple sclerosis. In this review, we focus on recent published data describing the biological effects of Vitamin D in animal models of multiple sclerosis on immune cells, blood-brain barrier function, activation of glial cells and its potential neuroprotective effects. Based on the current knowledge, we also discuss optimization of therapeutic interventions with Vitamin D in patients with multiple sclerosis, as well as new technologies allowing in-depth analysis of immune cell regulations by vitamin D.

Topics & Concepts

Multiple sclerosisImmune systemVitamin D and neurologyImmunologyNeuroprotectionMedicineVitaminBiologyNeuroscienceInternal medicineVitamin D Research StudiesWhipple's Disease and InterleukinsReproductive System and Pregnancy
Full spectrum of vitamin D immunomodulation in multiple sclerosis: mechanisms and therapeutic implications | Litcius