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钴离子会引起滑膜成纤维细胞的代谢应激,以及细胞因子/趋化因子的分泌,这些可能是髋关节植入物不良局部组织反应的诊断标志物。

Cobalt ions induce metabolic stress in synovial fibroblasts and secretion of cytokines/chemokines that may be diagnostic markers for adverse local tissue reactions to hip implants.

机构信息

Department of Materials Engineering, University of British Columbia, Vancouver, Canada; School of Biomedical Engineering, University of British Columbia, Vancouver, Canada; Centre for Hip Health and Mobility, Vancouver, BC, Canada.

Department of Urologic Sciences, University of British Columbia, Vancouver, Canada; Vancouver Prostate Centre, Cox: 2660 Oak Street, Vancouver, Canada.

出版信息

Acta Biomater. 2021 Sep 1;131:581-594. doi: 10.1016/j.actbio.2021.06.039. Epub 2021 Jun 27.

Abstract

Adverse local tissue reactions (ALTRs) are a prominent cause of hip implant failure. ALTRs are characterized by aseptic necrosis and leukocyte infiltration of synovial tissue. The prevalence of ALTRs in hips with failing metal implants, with highest rates occurring in patients with metal-on-metal articulations, suggests a role for CoCrMo corrosion in ALTR formation. Although hypersensitivity reactions are the most accepted etiology, the precise cellular mechanism driving ALTR pathogenesis remains enigmatic. Here we show that cobalt ions released by failing hip implants induce mitochondrial stress and cytokine secretion by synovial fibroblasts: the presumptive initiators of ALTR pathogenesis. We found that in-vitro treatment of synovial fibroblasts with cobalt, but not chromium, generated gene expression changes indicative of hypoxia and mitophagy responses also observed in ALTRs biopsies. Inflammatory factors secreted by cobalt-exposed synovial fibroblasts were among those most concentrated in ALTR synovial fluid. Furthermore, both conditioned media from cobalt-exposed synovial fibroblasts, and synovial fluid from ALTRs patients, elicit endothelial activation and monocyte migration. Finally, we identify the IL16/CTACK ratio in synovial fluid as a possible diagnostic marker of ALTRs. Our results provide evidence suggesting that metal ions induce cell stress in synovial fibroblasts that promote an inflammatory response consistent with initiating ALTR formation. STATEMENT OF SIGNIFICANCE: We demonstrate that the cytotoxic effects of cobalt ions on the synovial cells (fibroblast) is sufficient to trigger inflammation on hip joints with metal implants. Cobalt ions affect mitochondrial function, leading to the auto phagocytosis of mitochondria and trigger a hypoxic response. The cell's hypoxic response includes secretion of cytokines that are capable of trigger inflammation by activating blood vessels and enhancing leukocyte migration. Among the secreted cytokines is IL-16, which is highly concentrated in the synovial fluid of the patients with adverse local tissue reactions and could be use as diagnostic marker. In conclusion we define the cells of the hip joint as key players in triggering the adverse reactions to hip implants and providing biomarkers for early diagnosis of adverse reactions to hip implants.

摘要

不良局部组织反应(ALTR)是导致髋关节植入物失败的一个重要原因。ALTR 的特征是无菌性坏死和滑膜组织中的白细胞浸润。在出现故障的金属植入物髋关节中,ALTR 的发生率很高,其中金属对金属关节的发生率最高,这表明 CoCrMo 腐蚀在 ALTR 形成中起作用。尽管超敏反应是最被接受的病因,但驱动 ALTR 发病机制的确切细胞机制仍然是个谜。在这里,我们表明,失效的髋关节植入物释放的钴离子会引起滑膜成纤维细胞的线粒体应激和细胞因子分泌:这是 ALTR 发病机制的推定启动者。我们发现,体外用钴处理滑膜成纤维细胞会导致基因表达发生变化,这些变化表明存在缺氧和噬线粒体反应,这些反应也在 ALTR 活检中观察到。钴暴露的滑膜成纤维细胞分泌的炎症因子是在 ALTR 滑膜液中浓度最高的因子之一。此外,钴暴露的滑膜成纤维细胞的条件培养基以及来自 ALTR 患者的滑膜液均能引起内皮细胞激活和单核细胞迁移。最后,我们确定滑膜液中的 IL16/CTACK 比值可能是 ALTR 的诊断标志物。我们的研究结果提供了证据表明,金属离子会在滑膜成纤维细胞中引起细胞应激,从而促进与引发 ALTR 形成一致的炎症反应。

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