机械转化
化学
细胞外基质
再生(生物学)
纳米技术
自愈水凝胶
生物物理学
纤维
基质(化学分析)
细胞生物学
材料科学
生物化学
有机化学
色谱法
生物
作者
Xian Ning Xie,Zhuo Li,Xuefeng Yang,Boguang Yang,Zhixian Zong,Xuemei Wang,Liting Duan,Sien Lin,Gang Li,Liming Bian
摘要
The natural extracellular matrix, with its heterogeneous structure, provides a stable and dynamic biophysical framework and biochemical signals to guide cellular behaviors. It is challenging but highly desirable to develop a synthetic matrix that emulates the heterogeneous fibrous structure with macroscopic stability and microscopical dynamics and contains inductive biochemical signals. Herein, we introduce a peptide fiber-reinforced hydrogel in which the stiff ß-sheet fiber functions as a multivalent cross-linker to enhance the hydrogel's macroscopic stability. The dynamic imine cross-link between the peptide fiber and polymer network endows the hydrogel with a microscopically dynamic network. The obtained fibrillar nanocomposite hydrogel, with its cell-adaptable dynamic network, enhances cell–matrix and cell–cell interactions and therefore significantly promotes the mechanotransduction, metabolic energetics, and osteogenesis of encapsulated stem cells. Furthermore, the hydrogel can codeliver a fiber-attached inductive drug to further enhance osteogenesis and bone regeneration. We believe that our work provides valuable guidance for the design of cell-adaptive and bioactive biomaterials for therapeutic applications.
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