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短期取出的金属对陶瓷髋关节植入物中由化学作用驱动的结构改变:陶瓷与金属配对物在体内不相容的证据。

Chemistry-driven structural alterations in short-term retrieved ceramic-on-metal hip implants: Evidence for in vivo incompatibility between ceramic and metal counterparts.

作者信息

Zhu Wenliang, Pezzotti Giuseppe, Boffelli Marco, Chotanaphuti Thanainit, Khuangsirikul Saradej, Sugano Nobuhiko

机构信息

Department of Medical Engineering for Treatment of Bone and Joint Disorders, Osaka University, Suita, Osaka, 565-0854, Japan.

Ceramic Physics Laboratory, Kyoto Institute of Technology, Sakyo-ku, Matsugasaki, Kyoto, 606-8585, Japan.

出版信息

J Biomed Mater Res B Appl Biomater. 2017 Aug;105(6):1469-1480. doi: 10.1002/jbm.b.33689. Epub 2016 Apr 18.

Abstract

Ceramic-on-metal (CoM) hip implants were reported to experience lower wear rates in vitro as compared to metal-on-metal (MoM) bearings, thus hinting metal-ion release at lower levels in vivo. In this article, we show a spectroscopic study of two short-term retrieval cases of zirconia-toughened alumina (ZTA) femoral heads belonging to CoM hip prostheses, which instead showed poor wear performances in vivo. Metal contamination and abnormally high fractions of tetragonal-to-monoclinic (t→m) polymorphic transformation of the zirconia phase could be found on both ZTA heads, which contrasted with the optimistic predictions of in vitro experiments. At the molecular scale, incorporation of metal ions into the ceramic lattices could be recognized as due to frictionally assisted phenomena occurring at the ceramic surface. Driven by abnormal friction, diffusion of metal ions induced lattice shrinkage in the zirconia phases, while residual stress fields became stored at the surface of the femoral head. Diffusional alterations destabilized the chemistry of the ceramic surface and resulted in an abnormal increase in t→m phase transformation in vivo. Frictionally driven metal transfer to the ceramic lattice thus hinders the in vivo performance of CoM prostheses. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 1469-1480, 2017.

摘要

据报道,与金属对金属(MoM)轴承相比,陶瓷对金属(CoM)髋关节植入物在体外的磨损率更低,因此暗示其在体内的金属离子释放水平较低。在本文中,我们展示了对两个属于CoM髋关节假体的氧化锆增韧氧化铝(ZTA)股骨头短期取出病例的光谱研究,然而这些病例在体内却表现出较差的磨损性能。在两个ZTA股骨头表面均发现了金属污染以及氧化锆相从四方相向单斜相(t→m)的异常高比例多晶型转变,这与体外实验的乐观预测形成了对比。在分子尺度上,可以认识到金属离子融入陶瓷晶格是由于陶瓷表面发生的摩擦辅助现象。在异常摩擦的驱动下,金属离子的扩散导致氧化锆相晶格收缩,而残余应力场则存储在股骨头表面。扩散变化破坏了陶瓷表面的化学稳定性,并导致体内t→m相变异常增加。因此,摩擦驱动的金属转移到陶瓷晶格阻碍了CoM假体的体内性能。© 2016威利期刊公司。《生物医学材料研究杂志》B部分:应用生物材料,105B:1469 - 1480,2017。

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