骨整合
粘附
生物医学工程
成骨细胞
破骨细胞
间充质干细胞
植入
细胞粘附
材料科学
表面改性
骨愈合
细胞生物学
化学
纳米技术
体外
医学
外科
生物
复合材料
生物化学
物理化学
作者
Zihao Xu,Licai Miao,Xiangyu Meng,Junhao Sui,Mengchen Chen,Zhong Zheng,Shicheng Huo,Shuming Liu,Hao Zhang
标识
DOI:10.1016/j.colsurfb.2024.114042
摘要
In the field of orthopedics, surgeons have long been facing the challenge of loosening of external fixation screws due to inherent material characteristics. Despite Polyetheretherketone (PEEK) being employed as an orthopedic implant material for many years, its bio-inert nature often hinders bone healing due to the limited bioactivity, which restricts its clinical applications. Herein, a new type of orthopedic implant (Sr-SPK) was developed by introducing strontium (Sr)-doped mesoporous bioactive glass (Sr-MBG) onto the surface of PEEK implants through a simple and feasible method. In vitro experiments revealed that Sr-SPK effectively promotes osteogenic differentiation while concurrently suppressing the formation of osteoclasts. The same results were validated in vivo with Sr-SPK significantly improving bone integration. Upon investigation, it was found that Sr-SPK promotes adhesion among bone marrow mesenchymal stem cells (BMSCs) thereby promoting osteogenesis by activating the regulation of actin cytoskeletal and focal adhesion pathways, as identified via transcriptome analysis. In essence, these findings suggest that the newly constructed Sr-doped biofunctionalized PEEK implant developed in this research can promote osteoblast differentiation and suppress osteoclast activity by enhancing cell adhesion processes. These results underline the immense potential of such an implant for wide-ranging clinical applications in orthopedics.
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