地塞米松和维生素D3产生的耐受性树突状细胞部分通过转化生长因子-β1调节类风湿关节炎CD4+ T细胞。

Clinical & Experimental Immunology Pub Date : 2017-01-01 Epub Date: 2016-11-02 DOI:10.1111/cei.12870
A E Anderson, D J Swan, O Y Wong, M Buck, O Eltherington, R A Harry, A M Patterson, A G Pratt, G Reynolds, J-P Doran, J A Kirby, J D Isaacs, C M U Hilkens
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引用次数: 0

摘要

耐受性树突状细胞(tolDC)是治疗类风湿性关节炎(RA)和其他自身免疫性疾病的一种新的免疫治疗工具。我们已经建立了一种通过药理调节人单核细胞来源的DC来产生稳定的tolDC的方法。这些tolDC对CD4+ T细胞发挥强大的促耐受性作用。缺乏白细胞介素(IL)-12p70的产生是tolDC的一个关键免疫调节属性,但并不能完全解释它们的作用。在这里,我们发现tolDC在mRNA和蛋白水平上表达转化生长因子(TGF)-β1,并且这种免疫调节细胞因子在tolDC中的表达明显高于成熟的单核细胞来源的DC。通过抑制TGF-β1信号传导,我们证明了tolDC调节CD4+ T细胞反应的方式至少部分依赖于这种细胞因子。至关重要的是,我们还发现,虽然RA患者和健康对照者的CD4+ T细胞中TGF-βRII的表达没有显著差异,但RA患者的CD4+ T细胞对TGF-β1的反应明显低于健康对照者的CD4+ T细胞[TGF-β诱导的母亲抗十足瘫同源物(Smad)2/3磷酸化、叉头盒蛋白3 (FoxP3)表达和(IFN)-γ分泌抑制]。然而,RA患者的CD4+ T细胞可以通过依赖TGF-β1的方式被tolDC有效调节。这项工作对于未来研究tolDC作为一种治疗RA的新型免疫疗法的潜在用途的设计和发展是重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tolerogenic dendritic cells generated with dexamethasone and vitamin D3 regulate rheumatoid arthritis CD4+ T cells partly via transforming growth factor-β1.

Tolerogenic dendritic cells (tolDC) are a new immunotherapeutic tool for the treatment of rheumatoid arthritis (RA) and other autoimmune disorders. We have established a method to generate stable tolDC by pharmacological modulation of human monocyte-derived DC. These tolDC exert potent pro-tolerogenic actions on CD4+ T cells. Lack of interleukin (IL)-12p70 production is a key immunoregulatory attribute of tolDC but does not explain their action fully. Here we show that tolDC express transforming growth factor (TGF)-β1 at both mRNA and protein levels, and that expression of this immunoregulatory cytokine is significantly higher in tolDC than in mature monocyte-derived DC. By inhibiting TGF-β1 signalling we demonstrate that tolDC regulate CD4+ T cell responses in a manner that is at least partly dependent upon this cytokine. Crucially, we also show that while there is no significant difference in expression of TGF-βRII on CD4+ T cells from RA patients and healthy controls, RA patient CD4+ T cells are measurably less responsive to TGF-β1 than healthy control CD4+ T cells [reduced TGF-β-induced mothers against decapentaplegic homologue (Smad)2/3 phosphorylation, forkhead box protein 3 (FoxP3) expression and suppression of (IFN)-γ secretion]. However, CD4+ T cells from RA patients can, nonetheless, be regulated efficiently by tolDC in a TGF-β1-dependent manner. This work is important for the design and development of future studies investigating the potential use of tolDC as a novel immunotherapy for the treatment of RA.

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