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首页> 外文期刊>Arthritis and Rheumatism >Reduced CD4+,CD25- T cell sensitivity to the suppressive function of CD4+,CD25high,CD127 -/low regulatory T cells in patients with active systemic lupus erythematosus.
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Reduced CD4+,CD25- T cell sensitivity to the suppressive function of CD4+,CD25high,CD127 -/low regulatory T cells in patients with active systemic lupus erythematosus.

机译:活动性系统性红斑狼疮患者对CD4 +,CD25高,CD127-/低调节性T细胞抑制功能的CD4 +,CD25-T细胞敏感性降低。

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摘要

OBJECTIVE: CD4+,CD25high regulatory T (Treg) cells play a crucial role in the maintenance of self tolerance and prevention of organ-specific autoimmunity. The presence of many in vivo-preactivated CD4+,CD25++ T cells in patients with systemic lupus erythematosus (SLE) poses a difficulty in discriminating CD25++ activated T cells from CD25high Treg cells. To overcome this problem, we analyzed the phenotype and function of CD4+,CD25high,CD127(-/low) natural Treg (nTreg) cells isolated from the peripheral blood of patients with SLE. METHODS: CD4+,CD25high,CD127(-/low) nTreg cells and CD4+,CD25- responder T (Tresp) cells from patients with SLE and normal donors were separated by fluorescence-activated cell sorting. Cell proliferation was quantified by 3H-thymidine incorporation, and immunophenotyping of the cells was done using FACScan. RESULTS: Comparable percentages of CD4+,CD25high,FoxP3+ T cells were observed in patients with SLE and normal donors. Proliferation of SLE nTreg cells sorted into the subset CD4+,CD25high,CD127(-/low) was significantly decreased compared with that of SLE nTreg cells sorted into the subset CD4+,CD25high (mean +/- SEM 2,223 +/- 351 counts per minute versus 9,104 +/- 1,720 cpm, respectively), while in normal donors, these values were 802 +/- 177 cpm and 2,028 +/- 548 cpm, respectively, confirming that effector cell contamination was reduced. Notably, the suppressive activity of nTreg cells was intact in all groups. However, CD4+,CD25- Tresp cells isolated from patients with active SLE were significantly less sensitive than those from patients with inactive SLE to the suppressive function of autologous or normal donor CD4+,CD25high,CD127(-/low) nTreg cells. Furthermore, a significant inverse correlation was observed between the extent of T cell regulation in suppressor assays and the level of lupus disease activity. CONCLUSION: This study is the first to show that, in human SLE, impaired sensitivity of Tresp cells to the suppressive effects of a comparably functional, highly purified nTreg cell population leads to a defective suppression of T cell proliferation in active SLE. Studies aiming to define the mechanisms leading to Tresp cell resistance might help in the development of highly specific, alternative immunotherapeutic tools for the control of systemic autoimmune diseases such as SLE.
机译:目的:CD4 +,CD25高调节性T细胞在维持自身耐受性和预防器官特异性自身免疫中起着至关重要的作用。系统性红斑狼疮(SLE)患者体内许多体内预激活的CD4 +,CD25 ++ T细胞的存在给区分CD25 ++激活的T细胞和CD25high Treg细胞带来了困难。为了克服这个问题,我们分析了分离自SLE患者外周血的CD4 +,CD25high,CD127(-/ low)天然Treg(nTreg)细胞的表型和功能。方法:通过荧光激活细胞分选术分离患有SLE和正常供者的CD4 +,CD25high,CD127(-/ low)nTreg细胞和CD4 +,CD25-应答性T(Tresp)细胞。通过3 H-胸苷掺入来定量细胞增殖,并使用FACScan进行细胞的免疫表型分析。结果:在SLE患者和正常供者中,CD4 +,CD25high,FoxP3 + T细胞的百分比相当。与分类为CD4 +,CD25high的SLE nTreg细胞相比,分选为CD4 +,CD25high,CD127(-/ low)的SLE nTreg细胞的增殖显着降低(平均+/- SEM 2,223 +/- 351个计数/分钟)与分别为9,104 +/- 1,720 cpm相比),而在正常供体中,这些值分别为802 +/- 177 cpm和2,028 +/- 548 cpm,证实效应细胞污染得以减少。值得注意的是,nTreg细胞的抑制活性在所有组中均完整。但是,从活动性SLE患者中分离出的CD4 +,CD25- Tresp细胞对自体或正常供体CD4 +,CD25high,CD127(-/ low)nTreg细胞抑制功能的敏感性明显低于非活动性SLE患者。此外,在抑制试验中T细胞调节的程度与狼疮疾病活性水平之间观察到显着的负相关。结论:这项研究首次表明,在人类SLE中,Tresp细胞对功能相同,高度纯化的nTreg细胞群的抑制作用的敏感性受损会导致活性SLE中T细胞增殖抑制作用的缺陷。旨在确定导致Tresp细胞耐药性的机制的研究可能有助于开发高度特异性的替代性免疫治疗工具,以控制全身性自身免疫性疾病(例如SLE)。

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