Guo Xinwei, Zheng Huimin, Guo Yusi, Heng Boon Chin, Yang Yue, Yao Weitong, Jiang Shengjie
Beijing Laboratory of Biomedical Materials, Department of Geriatric Dentistry, Peking University School and Hospital of Stomatology, Beijing, China.
Department of Prosthodontics, The First Clinical Division, Peking University School and Hospital of Stomatology, Beijing, China.
Front Bioeng Biotechnol. 2023 Feb 27;11:1161192. doi: 10.3389/fbioe.2023.1161192. eCollection 2023.
Achieving a successful reconstruction of alveolar bone morphology still remains a challenge because of the irregularity and complex microenvironment of tooth sockets. Biological materials including hydroxyapatite and collagen, are used for alveolar ridge preservation. However, the healing effect is often unsatisfactory. Inspired by superwetting biomimetic materials, we constructed a 3D actively-spreading bone repair material. It consisted of photocurable polyether F127 diacrylate hydrogel loaded with mixed spheroids of mesenchymal stem cells (MSCs) and vascular endothelial cells (ECs). Biologically, cells in the spheroids were able to spread and migrate outwards, and possessed both osteogenic and angiogenic potential. Meanwhile, ECs also enhanced osteogenic differentiation of MSCs. Mechanically, the excellent physical properties of F127DA hydrogel ensured that it was able to be injected directly into the tooth socket and stabilized after light curing. experiments showed that MSC-EC-F127DA system promoted bone repair and preserved the shape of alveolar ridge within a short time duration. In conclusion, the novel photocurable injectable MSC-EC-F127DA hydrogel system was able to achieve three-dimensional tissue infiltration, and exhibited much therapeutic potential for complex oral bone defects in the future.
由于牙槽窝的不规则性和复杂的微环境,实现牙槽骨形态的成功重建仍然是一项挑战。包括羟基磷灰石和胶原蛋白在内的生物材料被用于牙槽嵴保存。然而,愈合效果往往不尽人意。受超润湿性仿生材料的启发,我们构建了一种三维主动扩展的骨修复材料。它由负载间充质干细胞(MSCs)和血管内皮细胞(ECs)混合球体的光固化聚醚F127二丙烯酸酯水凝胶组成。从生物学角度来看,球体中的细胞能够向外扩散和迁移,并具有成骨和血管生成潜能。同时,ECs还增强了MSCs的成骨分化。从力学角度来看,F127DA水凝胶优异的物理性能确保它能够直接注入牙槽窝并在光固化后稳定下来。实验表明,MSC-EC-F127DA系统在短时间内促进了骨修复并保留了牙槽嵴的形状。总之,新型光固化可注射的MSC-EC-F127DA水凝胶系统能够实现三维组织浸润,并且在未来对复杂口腔骨缺损具有很大的治疗潜力。