骨膜
脚手架
再生(生物学)
骨肉瘤
解剖
医学
生物
细胞生物学
生物医学工程
病理
作者
Yan Xu,Chao Xu,Huan Song,Xiaobo Feng,Liang Ma,Xiaoguang Zhang,Gaocai Li,Congpu Mu,Lei Tan,Zhengdong Zhang,Zhongyuan Liu,Zhiqiang Luo,Cao Yang
标识
DOI:10.1186/s12951-024-02430-7
摘要
The complexity of repairing large segment defects and eradicating residual tumor cell puts the osteosarcoma clinical management challenging. Current biomaterial design often overlooks the crucial role of precisely regulating innervation in bone regeneration. Here, we develop a Germanium Selenium (GeSe) co-doped polylactic acid (PLA) nanofiber membrane-coated tricalcium phosphate bioceramic scaffold (TCP-PLA/GeSe) that mimics the bone-periosteum structure. This biomimetic scaffold offers a dual functionality, combining piezoelectric and photothermal conversion capabilities while remaining biodegradable. When subjected to ultrasound irradiation, the US-electric stimulation of TCP-PLA/GeSe enables spatiotemporal control of neurogenic differentiation. This feature supports early innervation during bone formation, promoting early neurogenic differentiation of Schwann cells (SCs) by increasing intracellular Ca
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