Auclair-Daigle C, Bureau M N, Legoux J-G, Yahia L'H
Groupe de Recherche en Biomécanique et Biomatériaux, Ecole Polytechnique, C.P. 6079, Succ. Centre-Ville, Montréal, Canada, H3C 3A7.
J Biomed Mater Res A. 2005 Jun 15;73(4):398-408. doi: 10.1002/jbm.a.30284.
Hydroxyapatite [HA, Ca10(PO4)6(OH)2] coatings on polymer composite substrates were investigated for their bioactivity and their physicochemical and mechanical characteristics. HA holds key characteristics for use in orthopedic applications, such as for coating of the femoral stem in a hip replacement device. The plasma-spray technique was used to project HA onto a carbon fiber/polyamide 12 composite substrate. The resulting HA coatings exhibited mechanical adhesion as high as 23 MPa, depending on the surface treatment of the composite substrate. The purpose of this investigation was to evaluate the bioactivity of an HA-coated composite substrate. HA- coated samples have been immersed in simulated body fluid (SBF) and maintained within a shaker bath for periods of 1, 7, 14, 21, and 28 days at 37 degrees C. Scanning electron microscopy, energy dispersive X-ray spectroscopy, and X-ray diffraction techniques were performed on the samples before and after immersion into SBF. SBF was analyzed using inductively coupled plasma atomic emission spectrometry for element concentration and evaluation of the solution's purity. SBF conditioning led to the deposition of crystalline HA onto the surface of the coatings. The calcium-to-phosphorous ratios of initial HA coating and of newly deposited HA were respectively 1.72 and 1.65, close to the HA theoretical calcium/phosphorous value of 1.67. Results demonstrated that bioactive HA coatings were produced by plasma spraying, because SBF conditioning induced newly formed HA with high crystallinity. Mechanical adhesion of the HA coatings was not significantly affected upon SBF conditioning.
对聚合物复合材料基体上的羟基磷灰石[HA,Ca10(PO4)6(OH)2]涂层的生物活性及其物理化学和机械特性进行了研究。HA具有用于骨科应用的关键特性,例如用于髋关节置换装置中股骨柄的涂层。采用等离子喷涂技术将HA喷涂到碳纤维/聚酰胺12复合材料基体上。根据复合材料基体的表面处理情况,所得的HA涂层表现出高达23 MPa的机械附着力。本研究的目的是评估HA涂层复合材料基体的生物活性。将HA涂层样品浸入模拟体液(SBF)中,并在37℃的摇床浴中保持1、7、14、21和28天。对浸入SBF前后的样品进行扫描电子显微镜、能量色散X射线光谱和X射线衍射技术分析。使用电感耦合等离子体原子发射光谱法分析SBF的元素浓度并评估溶液的纯度。SBF处理导致在涂层表面沉积结晶HA。初始HA涂层和新沉积HA的钙磷比分别为1.72和1.65,接近HA的理论钙/磷值1.67。结果表明,通过等离子喷涂制备了具有生物活性的HA涂层,因为SBF处理诱导形成了高结晶度的新HA。SBF处理对HA涂层的机械附着力没有显著影响。