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CD4+CD25bright Regulatory T Cells Actively Regulate Inflammation in the Joints of Patients with the Remitting Form of Juvenile Idiopathic Arthritis

de Kleer IM, Wedderburn LR, Taams LS +10 more2004The Journal of ImmunologyJournal Article
10.4049/jimmunol.172.10.6435PubMed
Immune/InnateMusculoskeletal

Abstract

Abstract This study investigates the role of CD4+CD25+ regulatory T cells during the clinical course of juvenile idiopathic arthritis (JIA). Persistent oligoarticular JIA (pers-OA JIA) is a subtype of JIA with a relatively benign, self-remitting course while extended oligoarticular JIA (ext-OA JIA) is a subtype with a much less favorable prognosis. Our data show that patients with pers-OA JIA display a significantly higher frequency of CD4+CD25bright T cells with concomitant higher levels of mRNA FoxP3 in the peripheral blood than ext-OA JIA patients. Furthermore, while numbers of synovial fluid (SF) CD4+CD25bright T cells were equal in both patient groups, pers-OA JIA patients displayed a higher frequency of CD4+CD25int T cells and therefore of CD4+CD25total in the SF than ext-OA JIA patients. Analysis of FoxP3 mRNA levels revealed a high expression in SF CD4+CD25bright T cells of both patient groups and also significant expression of FoxP3 mRNA in the CD4+CD25int T cell population. The CD4+CD25bright cells of both patient groups and the CD4+CD25int cells of pers-OA JIA patients were able to suppress responses of CD25neg cells in vitro. A markedly higher expression of CTLA-4, glucocorticoid-induced TNFR, and HLA-DR on SF CD4+CD25bright T regulatory (Treg) cells compared with their peripheral counterparts suggests that the CD4+CD25+ Treg cells may undergo maturation in the joint. In correlation with this mature phenotype, the SF CD4+CD25bright T cells showed an increased regulatory capacity in vitro compared with peripheral blood CD4+CD25bright T cells. These data suggest that CD4+CD25bright Treg cells play a role in determining the patient’s fate toward either a favorable or unfavorable clinical course of disease.

Key Biomarkers

CD4+CD25+ regulatory T cellsCTLA-4Foxp3 mRNAGlucocorticoid-induced TNFRHLA-DR

Symptom Clusters

Joint inflammationOligoarticular arthritis

Cited By (11)

  • CD4+CD25+FoxP3+PD1— regulatory T cells in acute and stable relapsing‐remitting multiple sclerosis and their modulation by therapyThe FASEB Journal · 2008
  • Proinflammatory mediator-induced reversal of CD4+CD25+ regulatory T cell-mediated suppression in rheumatoid arthritisArthritis & Rheumatism · 2007
  • Function and Role of Regulatory T Cells in Rheumatoid ArthritisFrontiers in Immunology · 2021
  • 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
  • Treg cell numbers and function in patients with antibiotic‐refractory or antibiotic‐responsive lyme arthritisArthritis & Rheumatism · 2010
  • Reduced frequencies and suppressive function of CD4+CD25hi regulatory T cells in patients with chronic lymphocytic leukemia after therapy with fludarabineBlood · 2005

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  • References (2)

    • The spontaneous remission of juvenile idiopathic arthritis is characterized by CD30+ T cells directed to human heat-shock protein 60 capable of producing the regulatory cytokine interleukin-10Arthritis & Rheumatism · 2003
    • The Role of IL-10 and TGF-β in the Differentiation and Effector Function of T Regulatory CellsInternational Archives of Allergy and Immunology · 2002