The immunology of multiple sclerosis

Research output: Contribution to journalReviewResearchpeer-review

  • Kathrine E. Attfield
  • Lise Torp Jensen
  • Max Kaufmann
  • Manuel A. Friese
  • Fugger, Lars

Our incomplete understanding of the causes and pathways involved in the onset and progression of multiple sclerosis (MS) limits our ability to effectively treat this complex neurological disease. Recent studies explore the role of immune cells at different stages of MS and how they interact with cells of the central nervous system (CNS). The findings presented here begin to question the exclusivity of an antigen-specific cause and highlight how seemingly distinct immune cell types can share common functions that drive disease. Innovative techniques further expose new disease-associated immune cell populations and reinforce how environmental context is critical to their phenotype and subsequent role in disease. Importantly, the differentiation of immune cells into a pathogenic state is potentially reversible through therapeutic manipulation. As such, understanding the mechanisms that provide plasticity to causal cell types is likely key to uncoupling these disease processes and may identify novel therapeutic targets that replace the need for cell ablation.

This Review explores the complex roles of immune cells in the onset and progression of multiple sclerosis, describing the influence of environmental and genetic factors on immune cell phenotype and function. The authors highlight that teasing out the precise roles of different immune cell subsets at different stages of the disease will be key to effective treatment strategies.

Original languageEnglish
JournalNature Reviews Immunology
Volume22
Issue number12
Pages (from-to)734-750
Number of pages17
ISSN1474-1733
DOIs
Publication statusPublished - 2022

    Research areas

  • CENTRAL-NERVOUS-SYSTEM, CD8(+) T-CELLS, PLASMACYTOID DENDRITIC CELLS, INTERFERON-BETA THERAPY, NATURAL-KILLER-CELLS, CEREBROSPINAL-FLUID, PERIPHERAL-BLOOD, GENETIC RISK, MAIT CELLS, TH17 CELLS

ID: 314960786