Kyomoto Masayuki, Iwasaki Yasuhiko, Moro Toru, Konno Tomohiro, Miyaji Fumiaki, Kawaguchi Hiroshi, Takatori Yoshio, Nakamura Kozo, Ishihara Kazuhiko
Research Division, Japan Medical Materials Corporation, Japan.
Biomaterials. 2007 Jul;28(20):3121-30. doi: 10.1016/j.biomaterials.2007.03.010. Epub 2007 Mar 18.
Osteolysis caused by wear particles from polyethylene in artificial hip joints is of great concern. Various bearing couple combinations, bearing material improvements, and surface modifications have been attempted to reduce such wear particles. With the aim of reducing the wear and developing a novel artificial hip-joint system, we created a highly lubricious metal-bearing material: A 2-methacryloyloxyethyl phosphorylcholine (MPC) polymer was grafted onto the surface of the cobalt-chromium-molybdenum (Co-Cr-Mo) alloy. For ensuring the long-term retention of poly(MPC) on the Co-Cr-Mo alloy, we used a 4-methacryloxyethyl trimellitate anhydride (4-META) intermediate layer and photo-induced graft polymerization technique to create a strong bonding between the Co-Cr-Mo substrate and the poly(MPC) chain via the 4-META layer. The Co-Cr-Mo alloy was pretreated with nitric acid and O(2) plasma to facilitate efficient interaction between the 4-META carboxyl group and the surface hydroxyl group on the Cr oxide passive layer of the Co-Cr-Mo alloy. After MPC grafting, the MPC unit peaks were clearly observed in the Fourier-transform infrared spectroscopy with attenuated total reflection (FT-IR/ATR) and X-ray photoelectron spectroscopy (XPS) spectra of the Co-Cr-Mo surface. Tribological studies with a pin-on-plate machine revealed that surface MPC grafting markedly lowered the friction coefficient. We concluded that the grafted poly(MPC) layer successfully provided high lubricity to the Co-Cr-Mo surface.
人工髋关节中聚乙烯磨损颗粒引起的骨溶解备受关注。人们尝试了各种轴承副组合、改进轴承材料以及进行表面改性,以减少此类磨损颗粒。为了减少磨损并开发一种新型人工髋关节系统,我们制备了一种具有高润滑性的金属轴承材料:将2-甲基丙烯酰氧乙基磷酰胆碱(MPC)聚合物接枝到钴铬钼(Co-Cr-Mo)合金表面。为确保聚(MPC)在Co-Cr-Mo合金上长期保留,我们使用偏苯三酸酐甲基丙烯酸氧乙酯(4-META)中间层和光引发接枝聚合技术,通过4-META层在Co-Cr-Mo基底和聚(MPC)链之间形成牢固的结合。对Co-Cr-Mo合金进行硝酸和氧气等离子体预处理,以促进4-META羧基与Co-Cr-Mo合金Cr氧化物钝化层表面羟基之间的有效相互作用。MPC接枝后,在Co-Cr-Mo表面的傅里叶变换红外光谱-衰减全反射(FT-IR/ATR)和X射线光电子能谱(XPS)光谱中清晰观察到MPC单元峰。用销盘式摩擦磨损试验机进行的摩擦学研究表明,表面MPC接枝显著降低了摩擦系数。我们得出结论,接枝的聚(MPC)层成功地为Co-Cr-Mo表面提供了高润滑性。