Venken Koen, Hellings Niels, Thewissen Marielle, Somers Veerle, Hensen Karen, Rummens Jean-Luc, Medaer Robert, Hupperts Raymond, Stinissen Piet
Hasselt University, Biomedisch Onderzoeksinstituut and Transnationale Universiteit Limburg, School of Life Sciences, Diepenbeek, Belgium.
Immunology. 2008 Jan;123(1):79-89. doi: 10.1111/j.1365-2567.2007.02690.x. Epub 2007 Sep 25.
CD4+ CD25(high) regulatory T cells (Tregs) of patients with relapsing-remitting (RR) multiple sclerosis (MS), in contrast to those of patients with secondary progressive (SP) MS, show a reduced suppressive function. In this study, we analysed forkhead box P3 (FOXP3) at the single-cell level in MS patients and controls (healthy individuals and patients with other neurological diseases) by means of intracellular flow cytometry. Our data revealed a reduced number of peripheral blood CD4+ CD25(high) FOXP3+ T cells and lower FOXP3 protein expression per cell in RR-MS patients than in SP-MS patients and control individuals, which was correlated with the suppressive capacity of Tregs in these patients. Interestingly, interferon (IFN)-beta-treated RR-MS patients showed restored numbers of FOXP3+ Tregs. Furthermore, a higher percentage of CD4+ CD25(high) FOXP3+ Tregs in RR-MS patients, as compared with controls and SP-MS patients, expressed CD103 and CD49d, adhesion molecules involved in T-cell recruitment towards inflamed tissues. This was consistent with a significantly increased number of CD27+ CD25(high) CD4+ T cells in the cerebrospinal fluid (CSF), as compared with peripheral blood, in RR-MS patients. Taken together, these data show aberrant FOXP3 expression at the single-cell level correlated with Treg dysfunction in RR-MS patients. Our results also suggest that Tregs accumulate in the CSF of RR-MS patients, in an attempt to down-regulate local inflammation in the central nervous system.
与继发进展型(SP)多发性硬化症(MS)患者相比,复发缓解型(RR)MS患者的CD4+ CD25(高表达)调节性T细胞(Tregs)显示出抑制功能降低。在本研究中,我们通过细胞内流式细胞术在单细胞水平分析了MS患者及对照(健康个体和患有其他神经系统疾病的患者)中的叉头框P3(FOXP3)。我们的数据显示,与SP-MS患者和对照个体相比,RR-MS患者外周血中CD4+ CD25(高表达)FOXP3+ T细胞数量减少,且每个细胞的FOXP3蛋白表达较低,这与这些患者中Tregs的抑制能力相关。有趣的是,接受干扰素(IFN)-β治疗的RR-MS患者显示FOXP3+ Tregs数量恢复。此外,与对照和SP-MS患者相比,RR-MS患者中更高比例的CD