González P, Serra J, Liste S, Chiussi S, León B, Pérez-Amor M, Martínez-Fernández J, de Arellano-López A R, Varela-Feria F M
Departamento de Física Aplicada, Universidade de Vigo, Lagoas-Marcosende 9, 36280 Vigo, Spain.
Biomaterials. 2003 Nov;24(26):4827-32. doi: 10.1016/s0142-9612(03)00405-8.
A new generation of light, tough and high-strength material for medical implants for bone substitutions with a good biological response is presented. The innovative product that fulfills all these requirements is based on biomorphic silicon carbide ceramics coated with a bioactive glass layer. The combination of the excellent mechanical properties and low density of the biomorphic SiC ceramics, used as a base material for implants, with the osteoconducting properties of the bioactive glass materials opens new possibilities for the development of alternative dental and orthopedic implants with enhanced mechanical and biochemical properties that ensures optimum fixation to living tissue. Biomorphic SiC is fabricated by molten-Si infiltration of carbon templates obtained by controlled pyrolysis of wood. Through this process, the microstructure of the final SiC product mimics that of the starting wood, which has been perfected by natural evolution. The basic features of such microstructure are its porosity (ranging from 30% to 70%) and its anisotropy, which resembles the cellular microstructure and the mechanical characteristics of the bone. The SiC ceramics have been successfully coated with a uniform and adherent bioactive glass film by pulsed laser ablation using an excimer ArF laser. The excellent coverage of the SiC rough surface without film spallation or detachment is demonstrated. In order to assess the coating bioactivity, in vitro tests by soaking the samples in simulated body fluid have been carried out. After 72 h, the formation of a dense apatite layer has been observed even in interconnecting pores by SEM and energy dispersive X-ray spectroscopy analysis demonstrating the bioactive response of this product.
本文介绍了一种用于骨替代的新一代轻质、坚韧且高强度的医用植入材料,该材料具有良好的生物反应。满足所有这些要求的创新产品基于涂有生物活性玻璃层的生物形态碳化硅陶瓷。用作植入物基材的生物形态碳化硅陶瓷具有优异的机械性能和低密度,与生物活性玻璃材料的骨传导性能相结合,为开发具有增强机械和生化性能的替代牙科和矫形植入物开辟了新的可能性,确保与活组织的最佳固定。生物形态碳化硅是通过对木材进行受控热解获得的碳模板进行熔融硅渗透制备的。通过这个过程,最终碳化硅产品的微观结构模仿了起始木材的微观结构,而起始木材的微观结构已经通过自然进化得到了完善。这种微观结构的基本特征是其孔隙率(范围从30%到70%)和各向异性,这类似于骨的细胞微观结构和力学特性。通过使用准分子ArF激光的脉冲激光烧蚀,成功地在碳化硅陶瓷上涂覆了均匀且附着的生物活性玻璃膜。证明了对碳化硅粗糙表面的优异覆盖,没有膜剥落或脱离。为了评估涂层的生物活性,进行了将样品浸泡在模拟体液中的体外测试。72小时后,通过扫描电子显微镜和能量色散X射线光谱分析,即使在相互连通的孔隙中也观察到了致密磷灰石层的形成,证明了该产品的生物活性反应。