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胸腺 Hassall 小体、调节性 T 细胞与类风湿关节炎。

Thymic Hassall's corpuscles, regulatory T-cells, and rheumatoid arthritis.

机构信息

Rheumatology Unit, Nantes University Hospital, Nantes, France.

出版信息

Semin Arthritis Rheum. 2010 Apr;39(5):347-55. doi: 10.1016/j.semarthrit.2008.08.010. Epub 2008 Oct 29.

DOI:10.1016/j.semarthrit.2008.08.010
PMID:18973928
Abstract

OBJECTIVE

To review evidence for the involvement of thymic Hassall's corpuscles (HC) in the pathogenesis of rheumatoid arthritis (RA).

METHODS

We used PubMed to search for articles dedicated to the involvement of HC and regulatory T-cells (Tregs) in the pathogenesis of RA, and articles on thymic B-cells.

RESULTS

Tregs are central players mediating tolerance to self. The functional defects in Tregs observed in patients with active RA may contribute to RA pathogenesis, promoting the premature immunosenescence of T-cells. This may partly explain the persisting expansion of CD4+ effector T-cell clones in peripheral blood, as well as the parallel improvement of RA activity and numbers of Tregs observed in the third trimester of pregnancy. HC play a major role in the selection of natural Tregs in the thymus, potentially altering the peripheral Tregs repertoire. The promiscuous expression of tissue-specific antigens by thymic medullary epithelial cells shapes the repertoire of natural Tregs. Thus, the presence of 2 major RA autoantigens (immunoglobulins and filaggrin) in the cytoplasm of normal human HC is puzzling, particularly given that thymic B-cells are also concentrated around HC, where CD55 (DAF) and CD59 are strongly expressed. Defects in HC could alter the repertoire of thymic B-cells and Tregs in RA patients, promoting the onset of this disorder.

CONCLUSION

The identification of other joint-specific antigens, like gp-39, in HC and medullary epithelial cells, would provide new insights into the mechanisms of RA pathogenesis and may lead to more specific and physiologic methods of immunomodulation.

摘要

目的

综述胸腺样小体(Hassall's corpuscles,HC)在类风湿关节炎(rheumatoid arthritis,RA)发病机制中的作用。

方法

我们使用 PubMed 搜索了有关 HC 与调节性 T 细胞(Tregs)在 RA 发病机制中作用以及胸腺 B 细胞的文章。

结果

Tregs 是介导自身耐受的核心细胞。在活动期 RA 患者中观察到的 Tregs 功能缺陷可能促成 RA 的发病机制,促进 T 细胞的过早免疫衰老。这部分解释了外周血中 CD4+效应 T 细胞克隆的持续扩增,以及妊娠晚期 RA 活性和 Tregs 数量的平行改善。HC 在胸腺中对天然 Tregs 的选择中起主要作用,可能改变外周 Tregs 库。胸腺髓质上皮细胞的组织特异性抗原的混杂表达塑造了天然 Tregs 的库。因此,正常人类 HC 细胞质中存在 2 种主要的 RA 自身抗原(免疫球蛋白和角蛋白丝)令人费解,尤其是因为胸腺 B 细胞也集中在 HC 周围,而 CD55(DAF)和 CD59 在此处强烈表达。HC 的缺陷可能改变 RA 患者的胸腺 B 细胞和 Tregs 库,促进该疾病的发生。

结论

在 HC 和髓质上皮细胞中鉴定出其他关节特异性抗原,如 gp-39,将为 RA 发病机制的机制提供新的见解,并可能导致更特异和更生理性的免疫调节方法。

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