Oral Ebru, O'Brien Caitlin, Doshi Brinda, Muratoglu Orhun K
Harris Orthopaedic Laboratory, Massachusetts General Hospital, 55 Fruit Street, GRJ 1260, Boston, Massachusetts 02114.
Department of Orthopaedic Surgery, Harvard Medical School, Boston, Massachusetts.
J Orthop Res. 2017 Jun;35(6):1343-1347. doi: 10.1002/jor.23380. Epub 2016 Aug 19.
Diffusion of vitamin E into radiation cross-linked ultrahigh molecular weight polyethylene (UHMWPE) is used to increase stability against oxidation of total joint implant components. The dispersion of vitamin E throughout implant preforms has been optimized by a two-step process of doping and homogenization. Both of these steps are performed below the peak melting point of the cross-linked polymer (<140°C) to avoid loss of crystallinity and strength. Recently, it was discovered that the exposure of UHMWPE to elevated temperatures, around 300°C, for a limited amount of time in nitrogen, could improve the toughness without sacrificing wear resistance. We hypothesized that high temperature homogenization of antioxidant-doped, radiation cross-linked UHMWPE could improve its toughness. We found that homogenization at 300°C for 8 h resulted in an increase in the impact toughness (74 kJ/m compared to 67 kJ/m ), the ultimate tensile strength (50 MPa compared to 43 MPa) and elongation at break (271% compared to 236%). The high temperature treatment did not compromise the wear resistance or the oxidative stability as measured by oxidation induction time. In addition, the desired homogeneity was achieved at a much shorter duration (8 h compared to >240 h) by using high temperature homogenization. © 2016 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 35:1343-1347, 2017.
维生素E扩散到辐射交联超高分子量聚乙烯(UHMWPE)中可用于提高全关节植入物组件抗氧化的稳定性。通过两步掺杂和均质化过程优化了维生素E在整个植入物预成型件中的分散。这两个步骤均在交联聚合物的峰值熔点以下(<140°C)进行,以避免结晶度和强度损失。最近发现,将UHMWPE在氮气中于约300°C的高温下暴露有限时间,可以在不牺牲耐磨性的情况下提高韧性。我们假设对抗氧化剂掺杂的辐射交联UHMWPE进行高温均质化可以提高其韧性。我们发现,在300°C下均质化8小时会导致冲击韧性增加(从67kJ/m增至74kJ/m)、极限拉伸强度增加(从43MPa增至50MPa)以及断裂伸长率增加(从236%增至271%)。通过氧化诱导时间测量,高温处理并未损害耐磨性或氧化稳定性。此外,通过使用高温均质化,在更短的时间内(8小时相比于>240小时)实现了所需的均匀性。©2016骨科学研究协会。由威利期刊公司出版。《矫形外科研究杂志》35:1343 - 1347, 2017年。