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Loss of Functional Suppression by CD4+CD25+ Regulatory T Cells in Patients with Multiple Sclerosis

The Journal of Experimental Medicine · 2004 · Vol. 199(7) · pp. 971–979
Vissia VigliettaClare Baecher‐AllanHoward L. WeinerDavid A. Hafler

Abstract

CD4+CD25+ regulatory T cells contribute to the maintenance of peripheral tolerance by active suppression because their deletion causes spontaneous autoimmune diseases in mice. Human CD4+ regulatory T cells expressing high levels of CD25 are suppressive in vitro and mimic the activity of murine CD4+CD25+ regulatory T cells. Multiple sclerosis (MS) is an inflammatory disease thought to be mediated by T cells recognizing myelin protein peptides. We hypothesized that altered functions of CD4+CD25hi regulatory T cells play a role in the breakdown of immunologic self-tolerance in patients with MS. Here, we report a significant decrease in the effector function of CD4+CD25hi regulatory T cells from peripheral blood of patients with MS as compared with healthy donors. Differences were also apparent in single cell cloning experiments in which the cloning frequency of CD4+CD25hi T cells was significantly reduced in patients as compared with normal controls. These data are the first to demonstrate alterations of CD4+CD25hi regulatory T cell function in patients with MS.

T-cell and B-cell ImmunologyImmune Cell Function and InteractionImmunotherapy and Immune ResponsesIL-2 receptorMultiple sclerosisPeripheral toleranceImmunologyBiologyRegulatory T cellMyelinCell biologyImmune toleranceT cell

MeSH terms

AdultAnimalsAutoimmune DiseasesFemaleHumansImmunizationMiddle AgedMultiple SclerosisReceptors, Antigen, T-CellReceptors, Interleukin-2Signal TransductionCD4-Positive T-LymphocytesCase-Control StudiesT-Lymphocyte SubsetsSelf Tolerance
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