Pettersson Maria, Skjöldebrand Charlotte, Filho Luimar, Engqvist Håkan, Persson Cecilia
Materials in Medicine Group, Division of Applied Materials Science, Department of Engineering Sciences, Uppsala University, Lägerhyddsvägen 1, 752 37 Uppsala, Sweden.
ACS Biomater Sci Eng. 2016 Jun 13;2(6):998-1004. doi: 10.1021/acsbiomaterials.6b00133. Epub 2016 May 3.
Silicon nitride (SiN) coatings have recently been introduced as a potential material for joint implant bearing surfaces, but there is no data on wear debris morphology nor their dissolution rate, something that could play a central role to implant longevity. In this study, wear debris was generated in a ball-on-disc setup in simulated body fluid. After serum digestion the debris was analyzed with scanning electron microscopy and energy-dispersive X-ray spectroscopy. The particle dissolution rate was evaluated using inductively coupled plasma techniques, on model SiN particles. The wear debris from SiN coatings was found to be round, in the nm range and formed agglomerates in the submicrometer to micrometer range. Model particles dissolved in simulated body fluid at a rate of: () = 39.45[1 - exp(-1.11 × 10)], where [()] = mg/L and [] = . This study can be used as a preliminary prediction of size, shape, and dissolution rate of wear debris from SiN coatings.
氮化硅(SiN)涂层最近作为关节植入物承载表面的一种潜在材料被引入,但目前尚无关于磨损颗粒形态及其溶解速率的数据,而这可能对植入物的使用寿命起着关键作用。在本研究中,磨损颗粒是在模拟体液的球盘装置中产生的。血清消化后,用扫描电子显微镜和能量色散X射线光谱仪对颗粒进行分析。使用电感耦合等离子体技术在模型SiN颗粒上评估颗粒溶解速率。发现来自SiN涂层的磨损颗粒呈圆形,尺寸在纳米范围内,并在亚微米到微米范围内形成团聚体。模型颗粒在模拟体液中的溶解速率为:() = 39.45[1 - exp(-1.11 × 10)],其中[()] = mg/L,[] = 。本研究可作为对SiN涂层磨损颗粒的尺寸、形状和溶解速率的初步预测。