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A multicenter approach evaluating the impact of vitamin E-blended polyethylene in cementless total hip replacement

机译:一种评估维生素E混合聚乙烯在非骨水泥全髋关节置换中的影响的多中心方法

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Since polyethylene is one of the most frequently used biomaterials as a liner in total hip arthroplasty, strong efforts have been made to improve design and material properties over the last 50 years. Antioxidants seems to be a promising alternative to further increase durability and reduce polyethylene wear in long term. As of yet, only in vitro results are available. While they are promising, there is yet no clinical evidence that the new material shows these advantages in vivo . To answer the question if vitamin-E enhanced ultra-high molecular weight polyethylene (UHMWPE) is able to improve long-term survivorship of cementless total hip arthroplasty we initiated a randomized long-term multicenter trial. Designed as a superiority study, the oxidation index assessed in retrieval analyses of explanted liners was chosen as primary parameter. Radiographic results (wear rate, osteolysis, radiolucency) and functional outcome (Harris Hip Scores, University of California-Los Angeles, Hip Disability and Osteoarthritis Outcome Score, Visual Analogue Scale) will serve as secondary parameters. Patients with the indication for a cementless total hip arthroplasty will be asked to participate in the study and will be randomized to either receive a standard hip replacement with a highly cross-linked UHMWPE-X liner or a highly cross-linked vitamin-E supplemented UHMWPE-XE liner. The follow-up will be 15 years, with evaluation after 5, 10 and 15 years. The controlled randomized study has been designed to determine if Vitamin-E supplemented highly cross-linked polyethylene liners are superior to standard XLPE liners in cementless total hip arthroplasty. While several studies have been started to evaluate the influence of vitamin-E, most of them evaluate wear rates and functional results. The approach used for this multicenter study, to analyze the oxidation status of retrieved implants, should make it possible to directly evaluate the ageing process and development of the implant material itself over a time period of 15 years.
机译:由于聚乙烯是全髋关节置换术中用作衬里的最常用生物材料之一,因此在过去50年中,人们一直在努力改善设计和材料性能。从长远来看,抗氧化剂似乎是一种有希望的替代品,可以进一步提高耐用性并减少聚乙烯的磨损。到目前为止,只有体外结果可用。尽管它们很有希望,但尚无临床证据表明这种新材料在体内具有这些优势。为了回答维生素E增强的超高分子量聚乙烯(UHMWPE)是否能够改善非骨水泥型全髋关节置换术的长期存活率的问题,我们启动了一项随机的长期多中心试验。被设计为一项优势研究,在外植衬板的回收分析中评估的氧化指数被选为主要参数。影像学检查结果(磨损率,溶骨度,放射线透过率)和功能结局(Harris髋关节评分,加州大学洛杉矶分校,髋关节残疾和骨关节炎结果评分,视觉模拟量表)将作为次要参数。有非骨水泥性全髋关节置换术指征的患者将被要求参加研究,并将被随机分配接受采用高交联的UHMWPE-X衬垫或高交联的维生素E补充的UHMWPE的标准髋关节置换术-XE衬板。随访时间为15年,并在5、10和15年后进行评估。设计了该对照随机研究,以确定在非骨水泥全髋关节置换术中补充维生素E的高度交联聚乙烯衬里是否优于标准XLPE衬里。虽然已经开始进行一些研究来评估维生素E的影响,但大多数研究都评估了磨损率和功能结果。这项用于多中心研究的方法,用于分析回收的植入物的氧化状态,应该可以在15年的时间内直接评估植入材料本身的老化过程和发展。

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