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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >In vitro analysis of the wear, wear debris and biological activity of surface-engineered coatings for use in metal-on-metal total hip replacements
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In vitro analysis of the wear, wear debris and biological activity of surface-engineered coatings for use in metal-on-metal total hip replacements

机译:用于金属对金属全髋关节置换的表面工程涂层的磨损,磨损碎片和生物活性的体外分析

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摘要

Extremely low wear rates have been reported for metal-on-metal total hip replacements, but concerns remain about the effects of metal ion release, dissolution rates and toxicity. Surface-engineered coatings have the potential to improve wear resistance and reduce the biological activity of the wear debris produced. The aim of this study was to examine the wear and wear debris generation from surface-engineered coatings: titanium nitride (TiN), chromium nitride (CrN) and chromium carbon nitride (CrcN) applied to a cobalt-chrome alloy (COCr) substrate. The coatings were articulated against themselves in a simple geometry model. The wear particles generated were characterized and the cytotoxic effect on U937 macrophages and L929 fibroblasts assessed. The CrN and CrCN coatings showed a decrease in wear compared to the CoCr bearings and produced small (less than 40 nm in length) wear particles. The wear particles released from the surface engineered bearings also showed a decreased cytotoxic effect on cells compared to the CoCr alloy debris. The reduced wear volumes coupled with the reduced cytotoxicity per unit volume of wear indicate the potential for the clinical application of this technology.
机译:据报道,金属对金属的全髋关节置换术的磨损率极低,但人们仍然担心金属离子释放,溶解速度和毒性的影响。经表面工程处理的涂层具有改善耐磨性并降低产生的磨损碎屑的生物活性的潜力。这项研究的目的是检查表面工程涂层产生的磨损碎片:氮化钛(TiN),氮化铬(CrN)和氮化铬碳氮化物(CrcN)应用于钴铬合金(COCr)基材。在简单的几何模型中将涂层铰接在自身上。对产生的磨损颗粒进行表征,并评估其对U937巨噬细胞和L929成纤维细胞的细胞毒性作用。与CoCr轴承相比,CrN和CrCN涂层的磨损降低,并且产生的磨粒很小(长度小于40 nm)。与CoCr合金碎屑相比,从表面工程轴承释放的磨损颗粒对细胞的细胞毒性作用也有所降低。减少的磨损量以及单位磨损量减少的细胞毒性表明该技术在临床上具有潜在的应用前景。

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