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In Vivo Imaging of Particle-Induced Inflammation and Osteolysis in the Calvariae of NFκB/Luciferase Transgenic Mice

机译:NFκB/荧光素酶转基因小鼠颅内颗粒诱导的炎症和溶骨的体内成像。

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摘要

Wear debris causes biological response which can result in periprosthetic osteolysis after total joint replacement surgery. Nuclear factor-kappa B (NFκB), a representative transcription factor involved in inflammation, is believed to play an important role in this event by regulating the production of proinflammatory mediators and osteoclastogenesis. In this study, we sought to determine whether activation of NFκB in response to stimulation by particles could be visualized by in vivo imaging. We loaded polyethylene (PE) particles onto the calvaria of NFκB/luciferase transgenic mouse, and detected luminescence generated by activation of NFκB. On day 7 after loading, the level of luminescence was maximal. Levels of luminescence were significantly correlated with the levels of luciferase activity, proinflammatory mediator mRNAs, and bone resorption parameters. This system, which enabled us to evaluate particle-induced inflammation and osteolysis without sacrificing mice, constitutes a useful tool for evaluating the efficacy of prophylaxis or treatments for particle-induced osteolysis.
机译:磨损碎片会引起生物学反应,这可能会导致全关节置换手术后假体周围发生骨溶解。核因子κB(NFκB)是一种参与炎症的代表性转录因子,据信在此事件中通过调节促炎性介质的产生和破骨细胞的形成起重要作用。在这项研究中,我们试图确定是否可以通过体内成像来可视化响应颗粒刺激的NFκB激活。我们将聚乙烯(PE)颗粒加载到NFκB/萤光素酶转基因小鼠的颅盖上,并检测到由NFκB激活产生的发光。加载后第7天,发光水平最大。发光水平与荧光素酶活性,促炎介质mRNA和骨吸收参数显着相关。该系统使我们能够在不牺牲小鼠的情况下评估颗粒诱导的炎症和骨溶解,是评估颗粒诱导的骨溶解的预防或治疗功效的有用工具。

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