← Explorer/Network

Natural Naive CD4+CD25+CD127low Regulatory T Cell (Treg) Development and Function Are Disturbed in Multiple Sclerosis Patients: Recovery of Memory Treg Homeostasis during Disease Progression

Venken K, Hellings N, Broekmans T +3 more2008The Journal of ImmunologyJournal Article
10.4049/jimmunol.180.9.6411PubMedFree full text
Immune/InnateNeurological

Abstract

Abstract Patients with relapsing-remitting multiple sclerosis (RR-MS) show a suboptimal CD4+CD25+ regulatory T cell (Treg) function, whereas no Treg alterations are observed in secondary progressive MS (SP-MS) patients. To clarify the difference in Treg activity between early and chronic disease stages in MS, we analyzed the functional capacity and homeostatic parameters of naive CD4+CD25+CD127lowCD45RA+ Tregs (nTregs) and their memory counterparts CD4+CD25+CD127lowCD45RO+ Tregs (mTregs) in untreated MS patients and healthy controls. Interestingly, whereas the suppressive capacity of FACS-sorted nTregs was impaired in both early and chronic MS patients, only the latter group showed a restored mTreg function. Consistent with this observation, chronic MS patients had increased numbers of mTregs as compared with age-matched early MS patients, whereas nTreg frequencies did not differ significantly. TCR excision circle numbers were reduced in nTregs of early MS patients, suggestive of a diminished nTreg thymic output. Moreover, a decreased number of CD31+ mTregs were observed in early vs chronic MS patients, indicating that inflammatory processes drive the homeostatic turnover of mTregs during the early disease stage. Additionally, early MS patients showed a more restricted nTreg and mTreg TCR BV gene profile as compared with healthy controls and chronic MS patients. Finally, analysis of IFN-β and glatiramer acetate-treated MS patients showed that these immunomodulatory drugs modify nTreg homeostasis. Taken together, this study provides strong evidence for a disturbed thymic nTreg development and function in MS patients. Moreover, memory Treg but not naive Treg homeostasis recovers during disease progression.

Key Biomarkers

CD31+ mTregsCD4+CD25+CD127low regulatory T cellsmemory Tregs (mTregs)naive Tregs (nTregs)TCR BV gene profileTCR excision circles

Symptom Clusters

relapsing-remitting multiple sclerosissecondary progressive multiple sclerosis

Cited By (3)

  • Intracerebral Human Regulatory T Cells: Analysis of CD4+CD25+FOXP3+ T Cells in Brain Lesions and Cerebrospinal Fluid of Multiple Sclerosis PatientsPLoS ONE · 2011
  • The role of regulatory T cells in multiple sclerosisNature Clinical Practice Neurology · 2008
  • Effect of IFN-ß therapy on the frequency and function of CD4+CD25+ regulatory T cells and Foxp3 gene expression in relapsing–remitting multiple sclerosis (RRMS): A preliminary studyJournal of Neuroimmunology · 2010

References (6)

  • Compromised CD4+ CD25high regulatory T‐cell function in patients with relapsing‐remitting multiple sclerosis is correlated with a reduced frequency of FOXP3‐positive cells and reduced FOXP3 expression at the single‐cell levelImmunology · 2008
  • Prevalence of Newly Generated Naive Regulatory T Cells (Treg) Is Critical for Treg Suppressive Function and Determines Treg Dysfunction in Multiple SclerosisThe Journal of Immunology · 2007
  • MHC class II expression identifies functionally distinct human regulatory T cells

Related Papers

  • CGRP sensory neurons promote tissue healing via neutrophils and macrophagesNature · 2024 · 2 shared tags
  • Invited review: Mechanisms of hypophagia during diseaseJournal of Dairy Science · 2021 · 2 shared tags
  • Diabetic complications and prospective immunotherapyFrontiers in Immunology · 2023 · 2 shared tags
  • Gut-Brain Inflammation Due to Toxin-Activated Mast Cells and Microglia in Autism Spectrum DisorderPreprints.org · 2025 · 2 shared tags
  • The Role of Adipokines and Myokines in the Pathogenesis of Different Obesity Phenotypes—New PerspectivesAntioxidants · 2023 · 2 shared tags
  • Herbal Therapeutics for CIRS Biomarkers in Autism Spectrum Disorders: A Mechanistic and Molecular Approach for Neuroimmune Pathology in PediatricsMedical Research Archives · 2025 · 2 shared tags
The Journal of Immunology · 2006
  • Interferon beta-1a therapy enhances CD4+ regulatory T-cell function: an ex vivo and in vitro longitudinal study in relapsing-remitting multiple sclerosisJournal of Neuroimmunology · 2007
  • Deficient CD4+CD25high T Regulatory Cell Function in Patients with Active Systemic Lupus ErythematosusThe Journal of Immunology · 2007
  • Secondary progressive in contrast to relapsing‐remitting multiple sclerosis patients show a normal CD4+CD25+ regulatory T‐cell function and FOXP3 expressionJournal of Neuroscience Research · 2006