聚乙二醇
再生(生物学)
无定形磷酸钙
纳米颗粒
钙
磷酸盐
化学
化学工程
材料科学
核化学
纳米技术
生物化学
细胞生物学
有机化学
生物
工程类
作者
Wen Lyu,Yufeng Ling,Xinyue Wang,Menglu Duan,Jie Yang,Yu Liu,Wenlei Wu
标识
DOI:10.1021/acsanm.4c06350
摘要
Periodontitis, a chronic condition leading to tooth loss, is primarily caused by microbial plaque and results in alveolar bone destruction. Growth differentiation factor 5 (GDF5) has potential for promoting bone regeneration. However, its effectiveness is limited due to a short half-life and burst release. To address this issue, we developed amorphous calcium phosphate (ACP) nanoparticles stabilized with poly(ethylene glycol) (PEG) through a wet chemical process and loaded them with GDF5 for controlled release. Moreover, GDF5/ACP nanospheres exhibited superior osteogenic activity in periodontal ligament stem cells (PDLSCs). Additionally, an electrospun scaffold composed of poly ε-caprolactone (PCL), collagen type I (COL), and GDF5/ACP was created to evaluate tissue regeneration using a rat model with maxillofacial burr hole bone defects. In vivo experiments have shown its remarkable ability to induce osteogenesis. By successfully designing the GDF5/ACP electrospun nanofiber scaffolds, we achieved sustained delivery of GDF5, effectively guiding PDLSCs toward bone differentiation and facilitating alveolar bone repair. This study establishes a solid basis for future utilization of this nanocomposite scaffold in the treatment of periodontal bone defects.
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