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A review of UHMWPE wear-induced osteolysis: the role for early detection of the immune response

机译:UHMWPE磨损引起的骨溶解的综述:早期发现免疫反应的作用

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摘要

In a world where increasing joint arthroplasties are being performed on increasingly younger patients, osteolysis as the leading cause of failure after total joint arthroplasty (TJA) has gained considerable attention. Ultra-high molecular weight polyethylene wear-induced osteolysis is the process by which prosthetic debris mechanically released from the surface of prosthetic joints induces an immune response that favors bone catabolism, resulting in loosening of prostheses with eventual failure or fracture. The immune response initiated is innate in that it is nonspecific and self-propagating, with monocytic cells and osteoclasts being the main effectors. To date, detecting disease early enough to implement effective intervention without unwanted systemic side effects has been a major barrier. These barriers can be overcome using newer in vivo imaging techniques and modules linked with fluorescence and/or chemotherapies. We discuss the pathogenesis of osteolysis, and provide discussion of the challenges with imaging and therapeutics. We describe a positron emission tomography imaging cinnamoyl-Phe-(D)-Leu-Phe-(D)-Leu-Phe-Lys module, specific to macrophages, which holds promise in early detection of disease and localization of treatment. Further research and increased collaboration among therapeutic and three-dimensional imaging researchers are essential in realizing a solution to clinical osteolysis in TJA.
机译:在越来越多的年轻患者进行关节置换术的世界中,骨溶解是全关节置换术(TJA)后失败的主要原因。超高分子量聚乙烯磨损引起的骨溶解是这样一种过程,通过该过程,从义肢关节表面机械释放的义肢碎片会诱导有助于骨骼分解代谢的免疫反应,从而导致义肢松动,最终导致失败或骨折。发起的免疫反应是先天的,因为它是非特异性的并且是自我繁殖的,单核细胞和破骨细胞是主要的效应子。迄今为止,足够早地发现疾病以进行有效干预而又不会产生有害的系统性副作用已成为主要障碍。使用新型的体内成像技术和与荧光和/或化学疗法有关的模块可以克服这些障碍。我们讨论了骨溶解的发病机理,并讨论了影像学和治疗学方面的挑战。我们描述了特定于巨噬细胞的正电子发射断层显像成像肉桂酰基-Phe-(D)-Leu-Phe-(D)-Leu-Phe-Lys模块,该模块在疾病的早期检测和治疗的定位方面具有希望。在TJA中实现临床溶骨解决方案的过程中,进一步的研究以及治疗和三维影像研究人员之间日益增强的协作至关重要。

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