Ma Rui, Tang Tingting
Shanghai Key Laboratory of Orthopedic Implants, Department of Orthopedic Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200011, China.
Int J Mol Sci. 2014 Mar 28;15(4):5426-45. doi: 10.3390/ijms15045426.
The synthetic thermoplastic polymer polyetheretherketone (PEEK) is becoming a popular component of clinical orthopedic and spinal applications, but its practical use suffers from several limitations. Although PEEK is biocompatible, chemically stable, radiolucent and has an elastic modulus similar to that of normal human bone, it is biologically inert, preventing good integration with adjacent bone tissues upon implantation. Recent efforts have focused on increasing the bioactivity of PEEK to improve the bone-implant interface. Two main strategies have been used to overcome the inert character of PEEK. One approach is surface modification to activate PEEK through surface treatment alone or in combination with a surface coating. Another strategy is to prepare bioactive PEEK composites by impregnating bioactive materials into PEEK substrate. Researchers believe that modified bioactive PEEK will have a wide range of orthopedic applications.
合成热塑性聚合物聚醚醚酮(PEEK)正成为临床骨科和脊柱应用中一种受欢迎的组件,但其实际应用存在一些局限性。尽管PEEK具有生物相容性、化学稳定性、射线可透过性且弹性模量与正常人体骨骼相似,但它具有生物惰性,植入后无法与相邻骨组织良好整合。最近的研究致力于提高PEEK的生物活性以改善骨植入界面。已采用两种主要策略来克服PEEK的惰性。一种方法是表面改性,通过单独的表面处理或与表面涂层结合来激活PEEK。另一种策略是通过将生物活性材料浸渍到PEEK基材中来制备生物活性PEEK复合材料。研究人员认为,改性生物活性PEEK将在骨科领域有广泛应用。