双层
膜
材料科学
同种类的
再生(生物学)
生物物理学
生物医学工程
纳米技术
多孔性
制作
自愈水凝胶
接口(物质)
骨整合
作者
Du Y,Yangyi Nie,Zhiheng Luo,Junjie Deng,Zili Xu,Yuyang Zhang,Chenyu Gao,Yujie Liu,Xiangcheng Lei,Jing Long,Cairong Li,Zhenyu Yao,Wei Zhang,Ling Qin,Yuanchi Zhang,Yuxiao Lai,Yuanchi Zhang,Yuxiao Lai
标识
DOI:10.1038/s41467-026-74932-x
摘要
Guided bone regeneration using double-layered membranes is often hindered by poor interfacial integration, insufficient stability, and limited adaptability to regulate the complex healing process. Herein, we develop a unified bilayer membrane featuring a reinforced dual-crosslinking interface between barrier and porous layers through a homogeneous isomeric in-situ fabrication strategy. Its superior mechanical strength (~156 MPa in dry state and ~8.6 MPa in wet state) ensures the long-term degradation stability and bioactivity in vivo. Combined with sequentially released bioactive components, we show that the unified bilayer membrane regulates antibacterial functions, immunomodulation, neurovascularization, and osteogenesis, thereby enabling stage-adaptive bone regeneration. We test in a rat critical-sized cranial defect model to demonstrate that the membrane significantly outperforms the clinical collagen membrane, achieving ~2.7-fold greater bone volume regeneration after 8 weeks. This work further elucidates the spatiotemporal osteogenic mechanisms of the unified bilayer membrane, which constructs a well-integrated regenerative microenvironment and promotes a tightly interconnected neurovascular-osteogenic communication network during stage-adaptive bone repair.
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