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滑膜CD4 + T细胞衍生的粒细胞-巨噬细胞集落刺激因子支持类风湿性关节炎中炎症性树突状细胞群体的分化。

Synovial CD4+ T-cell-derived GM-CSF supports the differentiation of an inflammatory dendritic cell population in rheumatoid arthritis.

作者信息

Reynolds G, Gibbon J R, Pratt A G, Wood M J, Coady D, Raftery G, Lorenzi A R, Gray A, Filer A, Buckley C D, Haniffa M A, Isaacs J D, Hilkens C M U

机构信息

Arthritis Research UK Rheumatoid Arthritis Pathogenesis Centre of Excellence Musculoskeletal Research Group, Newcastle University, Newcastle-Upon-Tyne, UK.

Sunderland Royal Hospital, Sunderland, UK.

出版信息

Ann Rheum Dis. 2016 May;75(5):899-907. doi: 10.1136/annrheumdis-2014-206578. Epub 2015 Apr 28.

Abstract

OBJECTIVE

A population of synovial inflammatory dendritic cells (infDCs) has recently been identified in rheumatoid arthritis (RA) and is thought to be monocyte-derived. Here, we investigated the role and source of granulocyte macrophage-colony-stimulating factor (GM-CSF) in the differentiation of synovial infDC in RA.

METHODS

Production of GM-CSF by peripheral blood (PB) and synovial fluid (SF) CD4+ T cells was assessed by ELISA and flow cytometry. In vitro CD4+ T-cell polarisation experiments were performed with T-cell activating CD2/CD3/CD28-coated beads in the absence or presence of pro-Th1 or pro-Th17 cytokines. CD1c+ DC and CD16+ macrophage subsets were flow-sorted and analysed morphologically and functionally (T-cell stimulatory/polarising capacity).

RESULTS

RA-SF CD4+ T cells produced abundant GM-CSF upon stimulation and significantly more than RA-SF mononuclear cells depleted of CD4+ T cells. GM-CSF-producing T cells were significantly increased in RA-SF compared with non-RA inflammatory arthritis SF, active RA PB and healthy donor PB. GM-CSF-producing CD4+ T cells were expanded by Th1-promoting but not Th17-promoting conditions. Following coculture with RA-SF CD4+ T cells, but not healthy donor PB CD4+ T cells, a subpopulation of monocytes differentiated into CD1c+ infDC; a process dependent on GM-CSF. These infDC displayed potent alloproliferative capacity and enhanced GM-CSF, interleukin-17 and interferon-γ production by CD4+ T cells. InfDC with an identical phenotype to in vitro generated cells were significantly enriched in RA-SF compared with non-RA-SF/tissue/PB.

CONCLUSIONS

We demonstrate a therapeutically tractable feedback loop of GM-CSF secreted by RA synovial CD4+ T cells promoting the differentiation of infDC with potent capacity to induce GM-CSF-producing CD4+ T cells.

摘要

目的

最近在类风湿关节炎(RA)中发现了一群滑膜炎性树突状细胞(infDCs),并认为其来源于单核细胞。在此,我们研究了粒细胞巨噬细胞集落刺激因子(GM-CSF)在RA滑膜infDC分化中的作用和来源。

方法

通过酶联免疫吸附测定(ELISA)和流式细胞术评估外周血(PB)和滑液(SF)中CD4+ T细胞产生GM-CSF的情况。在存在或不存在促Th1或促Th17细胞因子的情况下,用包被有T细胞激活剂CD2/CD3/CD28的磁珠进行体外CD4+ T细胞极化实验。对CD1c+ DC和CD16+巨噬细胞亚群进行流式分选,并对其形态和功能(T细胞刺激/极化能力)进行分析。

结果

RA-SF CD4+ T细胞在受到刺激后产生大量GM-CSF,且显著多于去除CD4+ T细胞的RA-SF单核细胞。与非RA炎性关节炎滑液、活动期RA外周血和健康供体外周血相比,RA滑液中产生GM-CSF的T细胞显著增加。促Th1条件而非促Th17条件可使产生GM-CSF的CD4+ T细胞扩增。与健康供体外周血CD4+ T细胞共培养后,单核细胞亚群未分化为CD1c+ infDC;而与RA-SF CD4+ T细胞共培养后,单核细胞亚群分化为CD1c+ infDC,这一过程依赖于GM-CSF。这些infDC表现出强大的同种异体增殖能力,并增强了CD4+ T细胞产生GM-CSF、白细胞介素-17和干扰素-γ的能力。与非RA滑液/组织/外周血相比,RA滑液中与体外产生的细胞具有相同表型的infDC显著富集。

结论

我们证明了RA滑膜CD4+ T细胞分泌的GM-CSF存在一个可用于治疗的反馈回路,该回路促进了具有诱导产生GM-CSF的CD4+ T细胞能力的infDC的分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28c1/4853576/0396a6aa90ce/annrheumdis-2014-206578f01.jpg

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