Research Department, Japan Medical Materials Corporation, Osaka, Japan.
J Biomed Mater Res A. 2009 Dec;91(3):730-41. doi: 10.1002/jbm.a.32280.
Aseptic loosening of the artificial hip joint with osteolysis due to the wear particles from polyethylene cup has remained as a serious issue. To reduce this wear and develop a novel artificial hip joint system, we produced a superlubricious metal-bearing material: for this, we grafted a 2-methacryloyloxyethyl phosphorylcholine (MPC) polymer onto the surface of a cobalt-chromium-molybdenum (Co-Cr-Mo) alloy. For ensuring long-term benefit retention of poly(MPC) on the Co-Cr-Mo alloy for application as a novel artificial hip joint system, several issues must be considered: strong bonding between poly(MPC) and Co-Cr-Mo surface, high mobility of free end groups of the poly(MPC) layer, and high density of the introduced poly(MPC). Considering these issues, we introduced a 3-methacryloxypropyl trimethoxysilane (MPSi) intermediate layer and a photoinduced graft polymerization technique to create a strong covalent bond between the Co-Cr-Mo substrate and the poly(MPC) chain via the MPSi layer. The thickness and density of the poly(MPC) layer on the surface increased with the MPC concentration and photoirradiation time. The grafted poly(MPC) layer successfully provided super-lubricity to the Co-Cr-Mo surface. The poly(MPC)-grafted crosslinked polyethylene/poly(MPC)-grafted Co-Cr-Mo or cartilage/poly(MPC)-grafted Co-Cr-Mo bearing interface mimicking natural joints showed an extremely low friction coefficient of 0.01, which is as low as that of natural cartilage interface. A superlubricious metal-bearing surface would enable the development of a novel biocompatible artificial hip joint system-artificial femoral head for partial hemiarthroplasty and metal-on-polymer/metal type for total hip arthroplasty.
人工髋关节的无菌性松动伴聚乙烯杯磨损颗粒引起的骨溶解仍然是一个严重的问题。为了减少这种磨损并开发新型人工髋关节系统,我们制备了一种超滑润的金属承载材料:为此,我们将 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。为了确保作为新型人工髋关节系统应用的聚(MPC)在 Co-Cr-Mo 合金表面的长期保留,必须考虑以下几个问题:聚(MPC)与 Co-Cr-Mo 表面之间的牢固结合、聚(MPC)层的自由端基的高迁移率以及引入的聚(MPC)的高密度。考虑到这些问题,我们引入了 3-(甲基丙烯酰氧)丙基三甲氧基硅烷(MPSi)中间层和光引发接枝聚合技术,通过 MPSi 层在 Co-Cr-Mo 基底和聚(MPC)链之间形成强共价键。表面上聚(MPC)层的厚度和密度随 MPC 浓度和光照射时间的增加而增加。接枝的聚(MPC)层成功地赋予 Co-Cr-Mo 表面超滑润性。交联聚乙烯/接枝聚(MPC)的 Co-Cr-Mo 或软骨/接枝聚(MPC)的 Co-Cr-Mo 承载界面模拟天然关节表现出极低的摩擦系数 0.01,与天然软骨界面一样低。超滑润的金属承载表面将能够开发新型生物相容的人工髋关节系统-部分髋关节置换的人工股骨头和全髋关节置换的金属对聚合物/金属型。