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纤维蛋白沉积与关节炎中的软骨退变有关。

Fibrin deposition associates with cartilage degeneration in arthritis.

机构信息

Department of Rheumatology, Lausanne University Hospital (CHUV) and University of Lausanne, Chemin des Boveresses 155, Epalinges 1066, Switzerland.

Department of Rheumatology, Lausanne University Hospital (CHUV) and University of Lausanne, Chemin des Boveresses 155, Epalinges 1066, Switzerland.

出版信息

EBioMedicine. 2022 Jul;81:104081. doi: 10.1016/j.ebiom.2022.104081. Epub 2022 May 31.

Abstract

BACKGROUND

Cartilage damage in inflammatory arthritis is attributed to inflammatory cytokines and pannus infiltration. Activation of the coagulation system is a well known feature of arthritis, especially in rheumatoid arthritis (RA). Here we describe mechanisms by which fibrin directly mediates cartilage degeneration.

METHODS

Fibrin deposits were stained on cartilage and synovial tissue of RA and osteoarthritis (OA) patients and in murine adjuvant-induced arthritis (AIA) in wild-type or fibrinogen deficient mice. Fibrinogen expression and procoagulant activity in chondrocytes were evaluated using qRT-PCR analysis and turbidimetry. Chondro-synovial adhesion was studied in co-cultures of human RA cartilage and synoviocytes, and in the AIA model. Calcific deposits were stained in human RA and OA cartilage and in vitro in fibrinogen-stimulated chondrocytes.

FINDINGS

Fibrin deposits on cartilage correlated with the severity of cartilage damage in human RA explants and in AIA in wild-type mice, whilst fibrinogen deficient mice were protected. Fibrin upregulated Adamts5 and Mmp13 in chondrocytes. Chondro-synovial adhesion only occurred in fibrin-rich cartilage areas and correlated with cartilage damage. In vitro, autologous human synoviocytes, cultured on RA cartilage explants, adhered exclusively to fibrin-rich areas. Fibrin co-localized with calcification in human RA cartilage and triggered chondrocyte mineralization by inducing pro-calcification genes (Anx5, Pit1, Pc1) and the IL-6 cytokine. Similar fibrin-mediated mechanisms were observed in OA models, but to a lesser extent and without pseudo-membranes formation.

INTERPRETATION

In arthritis, fibrin plaques directly impair cartilage integrity via a triad of catabolism, adhesion, and calcification.

FUNDING

None.

摘要

背景

炎症性关节炎中的软骨损伤归因于炎症细胞因子和血管翳浸润。凝血系统的激活是关节炎的一个众所周知的特征,特别是在类风湿关节炎(RA)中。在这里,我们描述了纤维蛋白直接介导软骨退化的机制。

方法

在 RA 和骨关节炎(OA)患者的软骨和滑膜组织以及野生型或纤维蛋白原缺陷型小鼠的佐剂诱导关节炎(AIA)中,对纤维蛋白沉积物进行染色。使用 qRT-PCR 分析和浊度法评估软骨细胞中的纤维蛋白原表达和促凝活性。在人 RA 软骨和滑膜细胞的共培养物中和 AIA 模型中研究软骨-滑膜黏附。在人 RA 和 OA 软骨中和体外纤维蛋白原刺激的软骨细胞中,对钙化沉积物进行染色。

发现

人 RA 外植体和野生型小鼠 AIA 中软骨上的纤维蛋白沉积物与软骨损伤的严重程度相关,而纤维蛋白原缺陷型小鼠则受到保护。纤维蛋白上调了软骨细胞中的 Adamts5 和 Mmp13。软骨-滑膜黏附仅发生在富含纤维蛋白的软骨区域,与软骨损伤相关。在体外,自体人滑膜细胞在 RA 软骨外植体上培养时,仅黏附在富含纤维蛋白的区域。纤维蛋白与人 RA 软骨中的钙化共定位,并通过诱导前钙化基因(Anx5、Pit1、Pc1)和 IL-6 细胞因子引发软骨细胞矿化。在 OA 模型中也观察到类似的纤维蛋白介导机制,但程度较轻,且无伪膜形成。

解释

在关节炎中,纤维蛋白斑块通过代谢、黏附和钙化的三联体直接损害软骨完整性。

资金

无。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fec2/9163430/f2c0dc0988d6/gr1.jpg

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