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滑膜作为类风湿关节炎的优势部位:钙黏蛋白 11 作为滑膜病变的主要参与者。

The synovium as a privileged site in rheumatoid arthritis: cadherin-11 as a dominant player in synovial pathology.

机构信息

Department of Medicine III, Division of Rheumatology, Medical University of Vienna, Vienna General Hospital, Vienna, Austria.

出版信息

Best Pract Res Clin Rheumatol. 2011 Dec;25(6):767-77. doi: 10.1016/j.berh.2011.11.012.

Abstract

Rheumatoid arthritis is a systemic disease in which an autoimmune response translates primarily into joint inflammation with attendant joint destruction. While evidence implicates both the adaptive and innate immune system in rheumatoid synovitis, several lines of evidence now support the concept that the synovial tissue itself actively participates in the destructive inflammatory processes of arthritis. Specifically, the resident mesenchymal cells, the fibroblast-like synoviocytes (FLSs), frame a synovial microenvironment that responds to, augments and perpetuates the inflammatory process. Moreover, the FLSs have been recognised as the dominant cells mediating joint destruction. The identification of cadherin-11 expression on FLS provided an opportunity to unravel molecular mechanisms by which these resident mesenchymal cells govern processes that result in destructive synovitis in the context of systemic autoimmune disease. Herein, we discuss the unfolding biology of the synovial cadherin with its implications for the synovial pathology in arthritis, especially rheumatoid arthritis.

摘要

类风湿关节炎是一种全身性疾病,其中自身免疫反应主要转化为关节炎症,并伴有关节破坏。虽然有证据表明适应性免疫系统和固有免疫系统都参与了类风湿性滑膜炎,但现在有几条证据支持这样的概念,即滑膜组织本身积极参与关节炎的破坏性炎症过程。具体来说,定居的间充质细胞,成纤维样滑膜细胞(FLS),构成了一个滑膜微环境,对炎症过程做出反应、增强和维持。此外,FLS 已被认为是介导关节破坏的主要细胞。在 FLS 上表达钙黏蛋白-11 的鉴定为揭示这些定居间充质细胞控制导致系统性自身免疫疾病中破坏性滑膜炎的过程的分子机制提供了机会。本文讨论了滑膜钙黏蛋白的不断发展的生物学特性及其对关节炎(特别是类风湿关节炎)滑膜病理学的影响。

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