Institute of Orthopaedics and Musculoskeletal Science, University College London, Royal National Orthopaedic Hospital, Brockley Hill, Stanmore, Middlesex, HA7 4LP, UK.
Department of Orthopaedic Surgery and Traumatology, Kantonsspital Baselland (Bruderholz, Liestal, Laufen), Bruderholz, Switzerland.
Knee Surg Sports Traumatol Arthrosc. 2019 Jul;27(7):2111-2119. doi: 10.1007/s00167-019-05387-5. Epub 2019 Feb 10.
With the introduction of the Attune Knee System (DePuy) in March 2013, a new polyethylene formulation incorporating anti-oxidants was used. Although several in vitro studies have demonstrated the positive effects of antioxidants on UHMWPE, no retrieval study has looked at polyethylene damage of this system yet. It was the aim of this study to investigate the in vivo performance of this new design, by comparing it with its predecessors in retrieval analysis.
24 PFC (18 fixed bearing and 6 rotating platform designs) and 17 Attune (8 fixed bearing and 9 rotating platform designs) implants were retrieved. For retrieval analysis, a macroscopic analysis of polyethylene components, using a peer-reviewed damage grading method was used. Medio-lateral polyethylene thickness difference was measured with a peer-reviewed micro-CT based method. The roughness of metal components was measured. All findings were compared between the two designs.
Attune tibial inserts with fixed bearings showed significantly higher hood scores on the backside surface when compared with their PFC counterparts (p = 0.01), no other significant differences were found in the polyethylene damage of all the other surfaces analysed, in the surface roughness of metal components and in medio-lateral linear deformations.
A significant difference between PFC and Attune fixed bearing designs was found in terms of backside surface damage: multiple changes in material and design features could lead to a potential decrease of implant performance. Results from the present study may help to understand how the new Attune Knee System performs in vivo, impacting over 600,000 patients.
随着 2013 年 3 月 Attune 膝关节系统(DePuy)的推出,采用了一种新的含有抗氧化剂的聚乙烯配方。尽管有几项体外研究表明抗氧化剂对超高分子量聚乙烯有积极影响,但尚未有检索研究关注该系统的聚乙烯损伤。本研究旨在通过与检索分析中的前代产品进行比较,来研究这种新设计的体内性能。
共检索到 24 个 PFC(18 个固定轴承和 6 个旋转平台设计)和 17 个 Attune(8 个固定轴承和 9 个旋转平台设计)植入物。对于检索分析,使用经过同行评审的损伤分级方法对聚乙烯部件进行宏观分析。使用经过同行评审的基于微 CT 的方法测量中侧聚乙烯厚度差。测量金属部件的粗糙度。比较两种设计之间的所有发现。
与 PFC 相比,Attune 固定轴承胫骨衬垫的后侧罩得分明显更高(p=0.01),在分析的所有其他表面的聚乙烯损伤、金属部件的表面粗糙度和中侧线性变形方面,没有发现其他显著差异。
在背面表面损伤方面,PFC 和 Attune 固定轴承设计之间存在显著差异:材料和设计特征的多次变化可能导致植入物性能下降。本研究的结果可能有助于了解新的 Attune 膝关节系统在体内的性能,影响超过 60 万名患者。