首页> 外文期刊>Annals of the Rheumatic Diseases: A Journal of Clinical Rheumatology and Connective Tissue Research >ADAMTS-7 forms a positive feedback loop with TNF-α in the pathogenesis of osteoarthritis
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ADAMTS-7 forms a positive feedback loop with TNF-α in the pathogenesis of osteoarthritis

机译:ADAMTS-7在骨关节炎的发病机理中与TNF-α形成正反馈回路

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Objective: To examine the expression of ADAMTS-7 during the progression of osteoarthritis (OA), defining its role in the pathogenesis of OA, and elucidating the molecular events involved. Methods: ADAMTS-7 expression in cartilage of a rat OA model was assayed using immunohistochemistry. Cartilage-specific ADAMTS-7 transgenic mice and ADAMTS-7 small interfering (si)RNA knockdown mice were generated and used to analyse OA progression in both spontaneous and surgically induced OA models. Cartilage degradation and OA was evaluated using Safranin-O staining, immunohistochemistry, ELISA and western blotting. In addition, mRNA expression of tumour necrosis factor (TNF)-α and metalloproteinases known to be involved in cartilage degeneration in OA was analysed. Furthermore, the transactivation of ADAMTS-7 by TNF-α and its downstream NF-κB signalling was measured using reporter gene assay. Results: ADAMTS-7 expression was elevated during disease progression in the surgically induced rat OA model. Targeted overexpression of ADAMTS-7 in chondrocytes led to chondrodysplasia characterised by short-limbed dwarfism and a delay in endochondral ossification in 'young mice' and a spontaneous OA-like phenotype in 'aged' mice. In addition, overexpression of ADAMTS-7 led to exaggerated breakdown of cartilage and accelerated OA progression, while knockdown of ADAMTS-7 attenuated degradation of cartilage matrix and protected against OA development, in surgically induced OA models. ADAMTS-7 upregulated TNF-α and metalloproteinases associated with OA; in addition, TNF-α induced ADAMTS-7 through NF-κB signalling. Conclusions: ADAMTS-7 and TNF-α form a positive feedback loop in the regulation of cartilage degradation and OA progression, making them potential molecular targets for prevention and treatment of joint degenerative diseases, including OA.
机译:目的:研究ADAMTS-7在骨关节炎(OA)进展过程中的表达,确定其在OA发病机理中的作用,并阐明涉及的分子事件。方法:采用免疫组织化学方法检测大鼠OA模型软骨中ADAMTS-7的表达。生成了软骨特异性ADAMTS-7转基因小鼠和ADAMTS-7小干扰(si)RNA敲低小鼠,并用于分析自发和手术诱导的OA模型中的OA进展。使用番红O染色,免疫组织化学,ELISA和western blotting评估软骨降解和OA。此外,分析了已知与OA软骨变性有关的肿瘤坏死因子(TNF)-α和金属蛋白酶的mRNA表达。此外,使用报道基因测定法测量了TNF-α对ADAMTS-7的反式激活及其下游NF-κB信号传导。结果:在外科手术诱发的大鼠OA模型中,ADAMTS-7的表达在疾病进展过程中升高。软骨细胞中ADAMTS-7的靶向过度表达导致软骨发育不良,特征是“年轻小鼠”中的短肢侏儒症和软骨内骨化延迟,以及“衰老”小鼠中自发的OA样表型。此外,在外科手术诱发的OA模型中,ADAMTS-7的过表达导致软骨的过度破裂和OA进程的加速,而敲除ADAMTS-7则减弱了软骨基质的降解并防止OA的发展。 ADAMTS-7上调与OA相关的TNF-α和金属蛋白酶;另外,TNF-α通过NF-κB信号传导诱导ADAMTS-7。结论:ADAMTS-7和TNF-α在调节软骨降解和OA进程中形成正反馈回路,使其成为预防和治疗包括OA在内的关节退行性疾病的潜在分子靶标。

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