生物活性玻璃
类有机物
骨整合
软骨内骨化
生物医学工程
牙种植体
材料科学
双重功能
牙科
化学
植入
牙髓干细胞
老茧
矿化(土壤科学)
骨组织
骨愈合
成骨细胞
软组织
再生(生物学)
控制释放
纳米技术
骨化
生物相容性
骨形成
作者
Xu Wu,Yi Yang,Haohui Huang,Yonghao Qiu,Ling Li,Lunan Bi,Ke Song,Xiaofeng Chen,Longquan Shao,Yun Liao,Fujian Zhao
标识
DOI:10.1002/adhm.202504350
摘要
ABSTRACT Large maxillofacial bone defects severely impair oral function and aesthetics, and current treatments involving autologous bone grafting followed by prosthetic restoration are associated with high surgical trauma and prolonged rehabilitation. Herein, we present a tooth‐bone integrated organoid (TBO) strategy that synchronously reconstructs bone and dental implant structures in vitro, aiming to achieve dual restoration of structure and function post‐implantation. Bioactive glass (BG) was employed as a multifunctional “bond” that not only established effective adhesion between BG callus organoids and BG‐Si 3 N 4 implants via dual‐interface bonding with soft and hard tissues, but also acted as an active stimulant and mineralization agent to accelerate the hypertrophy and ossification of callus organoids in the late stage of endochondral ossification. Simultaneously, BG enhanced the osteogenic potential and osseointegration of the dental implants through bioactive ion release and interfacial mineralization. This approach boldly confronts and attempts to resolve the dual challenges of maxillofacial bone defects repair and dental arch restoration, offering a clinically translatable pathway toward integrated structural and functional maxillofacial regeneration.
科研通智能强力驱动
Strongly Powered by AbleSci AI