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首页> 外文期刊>Journal of biomedical materials research, Part A >Can Accelerated Aqueous Aging Simulate In Vivo Oxidation of Gamma-Sterilized UHMWPE?
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Can Accelerated Aqueous Aging Simulate In Vivo Oxidation of Gamma-Sterilized UHMWPE?

机译:加速水老化可以模拟γ-灭菌的UHMWPE的体内氧化吗?

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Oxidation of ultrahigh molecular weight polyethylene (UHMWPE) gamma-sterilized arthroplasty components occurs in vivo. Though accelerated in vitro protocols have been developed to test the relative oxidation resistance of various types of UHMWPE, it is desirable to develop an accelerated aging protocol that more closely approximates the in vivo environment. The goal of this study was to investigate the effects of temperature, solute, and oxygen partial pressure in aqueous media on the oxidation of gamma-sterilized UHMWPE, as the basis for the development of improved accelerated aging protocols. The accelerated oxidation behavior of gamma-sterilized GUR 1150 was studied at 60 and 70 deg C in an open vessel filled with distilled water or PBS in equilibrium with a controlled partial pressure of oxygen. The extent of oxidation was assessed using standardized mechanical and chemical evaluation techniques (small punch and Fourier transform infrared spectroscopy). Accelerated oxidation of UHMWPE was achieved in aqueous environmentshowever, both clinically relevant and nonrel-evant oxidation species (e.g., aldehydes) were observed for long aging times at 60 deg C, and for all aging times at 70 deg C. These findings point the way to the development of an accelerated aging protocol. The current data, considered in conjunction with real-time aging studies, suggest that a temperature between body temperature and 60 deg C may accelerate oxidative degradation without altering the oxidative patterns encountered in vivo.
机译:体内发生超高分子量聚乙烯(UHMWPE)γ消毒的关节置换部件的氧化。尽管已经开发了加速的体外方案来测试各种类型的UHMWPE的相对抗氧化性,但是期望开发出更接近于体内环境的加速的老化方案。这项研究的目的是研究温度,溶质和氧分压在水性介质中对γ-灭菌的UHMWPE氧化的影响,作为开发改进的加速老化方案的基础。在60摄氏度和70摄氏度下,在装有蒸馏水或PBS的开放式容器中,在氧分压受控的情况下,对经伽玛灭菌的GUR 1150的加速氧化行为进行了研究。使用标准的机械和化学评估技术(小冲孔和傅立叶变换红外光谱法)评估氧化程度。 UHMWPE的加速氧化在水环境中得以实现,在60℃的长时效时间和70℃的所有时效时间中都观察到了临床相关和非相对氧化的氧化物种(例如醛)。这些发现为我们指明了方向加速老化协议的开发。与实时衰老研究一起考虑的当前数据表明,体温与60摄氏度之间的温度可能会加速氧化降解,而不会改变体内遇到的氧化模式。

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