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Wear in total knee arthroplasty - Just a question of polyethylene?: Metal ion release in total knee arthroplasty

机译:全膝关节置换术中磨损-聚乙烯的一个问题?:全膝关节置换术中金属离子的释放

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Purpose: Biological reactions against wear particles are a common cause for revision in total knee arthroplasty. To date, wear has mainly been attributed to polyethylene. However, the implants have large metallic surfaces that also could potentially lead to metal wear products (metal ions and debris). The aim of this study was to determine the local release of cobalt, chromium, molybdenum and titanium in total knee arthroplasty during a standard knee wear test. Methods: Four moderately conforming fixed-bearing implants were subjected to physiological loadings and motions for 5×106 walking cycles in a knee wear simulator. Polyethylene wear was determined gravimetrically and the release of metallic wear products was measured using high resolution-inductively coupled plasma-mass spectrometry. Results: A polyethylene wear rate of 7.28 ± 0.27 mg/106 cycles was determined and the cumulative mass of released metals measured 1.63 ± 0.28 mg for cobalt, 0.47 ± 0.06 mg for chromium, 0.42 ± 0.06 mg for molybdenum and 1.28 ± 0.14 mg for titanium. Conclusion: For other metallic implants such as metal-on-metal total hip arthroplasty, the metal wear products can interact with the immune system, potentially leading to immunotoxic effects. In this study about 12 % by weight of the wear products were metallic, and these particles and ions may become clinically relevant for patients sensitive to these materials in particular. Non-metallic materials (e.g. ceramics or suitable coatings) may be considered for an alternative treatment for those patients.
机译:目的:针对磨损颗粒的生物反应是导致全膝关节置换术翻修的常见原因。迄今为止,磨损主要归因于聚乙烯。但是,植入物的金属表面较大,也可能导致产生金属磨损产物(金属离子和碎屑)。这项研究的目的是确定在标准膝关节磨损试验中,全膝关节置换术中钴,铬,钼和钛的局部释放。方法:在膝盖磨损模拟器中,对四个中等身材的固定支撑植入物进行5×106个步行循环的生理负荷和运动。用重量分析法测定聚乙烯磨损,并使用高分辨率电感耦合等离子体质谱法测量金属磨损产物的释放。结果:测定的聚乙烯磨损率为7.28±0.27 mg / 106循环,释放的金属的累积质量为:钴为1.63±0.28 mg,铬为0.47±0.06 mg,钼为0.42±0.06 mg,钼为1.28±0.14 mg钛。结论:对于其他金属植入物,例如金属对金属的全髋关节置换术,金属磨损产物可与免疫系统相互作用,可能导致免疫毒性作用。在这项研究中,约12%(重量)的磨损产品是金属的,这些颗粒和离子可能与对这些材料特别敏感的患者在临床上相关。可以考虑将非金属材料(例如陶瓷或合适的涂层)用于这些患者的替代治疗。

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