生物矿化
自愈水凝胶
材料科学
仿生学
纳米技术
矿化(土壤科学)
细胞外基质
生物医学工程
仿生材料
骨组织
同种类的
矿化组织
骨愈合
组织工程
人造骨
基质骨
骨形成
生物材料
仿生合成
骨整合
基质(化学分析)
生物相容性材料
钙
作者
Mingming Zhao,Xiaonong Zhang,Chunsheng Xiao,Xuesi Chen
标识
DOI:10.1002/adma.202520380
摘要
Bone mineralization is a tightly regulated process involving the deposition of hydroxyapatite and other calcium salt crystals within the collagen-rich extracellular matrix of bone tissue, which confers hierarchical architecture and exceptional biomechanical properties to bone through this organized biocrystal arrangement. Inspired by this natural process, biomimetic mineralized hydrogels, engineered to mimic the chemical composition, structural organization, mechanical strength, and osteoinductive capabilities of bone tissue, have garnered considerable attention as promising candidates for bone regeneration. This review systematically summarizes recent progress in the design and application of biomimetic mineralized hydrogels for bone regeneration. Following an overview of natural biomineralization principles, innovative strategies for constructing heterogeneous and homogeneous biomimetic mineralized hydrogels are first highlighted, emphasizing their structural and functional mimicry. Subsequently, their therapeutic applications are critically examined, including bone defect repair, osteochondral regeneration, osteoporotic bone repair, and other bone-related diseases (e.g., osteosarcoma, tendon-bone interface injury). Finally, persistent challenges are identified, and future research directions are proposed to advance these hydrogel systems toward clinical translation in bone tissue engineering.
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