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A Functional 3D Biomimetic Osteon Accelerates Bone Regeneration

ADVANCED FUNCTIONAL MATERIALS. 2025-03; 
Chenxu Zhu, Zexi Li, Xubin Qiu, Baizhen Zhao, Huan Wang, Lijie Wang, Ming Zhuang, Jinbo Liu, Fengxuan Han, Bin Li
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Proteins, Expression, Isolation and Analysis Protein samples were separated on 4–12% SDS-PAGE gels (GenScript, Nanjing, China) and transferred to polyvinylidene fluoride membranes. Get A Quote

摘要

The distinctive structure and composition of the Haversian canal within osteons play a pivotal role in sustaining the nutritional supply to individual bone cells. Consequently, the osteon's inherent advantages in facilitating bone repair have garnered increasing attention. However, most existing designs emulate only partial aspects of the osteon's architecture, failing to replicate its structure and functionality comprehensively. This study aimed to develop a functional 3D biomimetic osteon to enhance bone regeneration. To achieve this, oriented nanofibers mimicking osteonal lamellae are fabricated via electrospinning, while a biomimetic blood vessel, simulating the Haversian canal, is constructed using microfl... More

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