Wei Xinghui, Zhou Wenhao, Tang Zhen, Wu Hao, Liu Yichao, Dong Hui, Wang Ning, Huang Hai, Bao Shusen, Shi Lei, Li Xiaokang, Zheng Yufeng, Guo Zheng
Department of Orthopaedics, Tangdu Hospital, Fourth Military Medical University, Xi'an, Shaanxi, 710038, China.
Northwest Institute for Nonferrous Metal Research, Xi'an, Shaanxi, 710016, China.
Bioact Mater. 2022 May 18;20:16-28. doi: 10.1016/j.bioactmat.2022.05.011. eCollection 2023 Feb.
Polyetheretherketone (PEEK) has been an alternative material for titanium in bone defect repair, but its clinical application is limited by its poor osseointegration. In this study, a porous structural design and activated surface modification were used to enhance the osseointegration capacity of PEEK materials. Porous PEEK scaffolds were manufactured via fused deposition modeling and a polydopamine (PDA) coating chelated with magnesium ions (Mg) was utilized on the surface. After surface modification, the hydrophilicity of PEEK scaffolds was significantly enhanced, and bioactive Mg could be released. results showed that the activated surface could promote cell proliferation and adhesion and contribute to osteoblast differentiation and mineralization; the released Mg promoted angiogenesis and might contribute to the formation of osteogenic H-type vessels. Furthermore, porous PEEK scaffolds were implanted in rabbit femoral condyles for evaluation of osseointegration. The results showed that the customized three-dimensional porous structure facilitated vascular ingrowth and bone ingrowth within the PEEK scaffolds. The PDA coating enhanced the interfacial osseointegration of porous PEEK scaffolds and the released Mg accelerated early bone ingrowth by promoting early angiogenesis during the coating degradation process. This study provides an efficient solution for enhancing the osseointegration of PEEK materials, which has high potential for translational clinical applications.
聚醚醚酮(PEEK)已成为骨缺损修复中钛的替代材料,但其临床应用受到骨整合能力差的限制。在本研究中,采用多孔结构设计和表面活化改性来提高PEEK材料的骨整合能力。通过熔融沉积成型制备多孔PEEK支架,并在其表面使用与镁离子(Mg)螯合的聚多巴胺(PDA)涂层。表面改性后,PEEK支架的亲水性显著增强,且可释放具有生物活性的Mg。结果表明,活化表面可促进细胞增殖和黏附,有助于成骨细胞分化和矿化;释放的Mg促进血管生成,并可能有助于形成成骨H型血管。此外,将多孔PEEK支架植入兔股骨髁以评估骨整合情况。结果表明,定制的三维多孔结构促进了PEEK支架内的血管长入和骨长入。PDA涂层增强了多孔PEEK支架的界面骨整合,且在涂层降解过程中,释放的Mg通过促进早期血管生成加速了早期骨长入。本研究为增强PEEK材料的骨整合提供了一种有效解决方案,具有很高的临床转化应用潜力。