粘合连接
粘附
再生(生物学)
细胞粘附
细胞生物学
细胞内
神经细胞粘附分子
化学
细胞粘附分子
自愈水凝胶
神经细胞
功能(生物学)
纳米技术
细胞
神经干细胞
连接蛋白
神经科学
钙粘蛋白
细胞功能
材料科学
生物物理学
细胞膜
组织工程
作者
Xiaoxuan Tang,Shuxuan Zhang,Mengke Liu,Yuxin Liang,Yulan Fan,Xinyue Sun,He Chang,Xuewa Yang,Rong Zhu,Xiaoling Jin,QianXing Zhuang,Yifan Ge,Jue Ling,Yumin Yang
标识
DOI:10.1038/s41467-026-68632-9
摘要
Cell-cell adhesion is crucial for maintaining cell functions and the integrity of tissue structure in organisms. However, cell-cell adhesion cues have not been effectively replicated in biomaterials and the associated mechanisms that enhance neural regeneration remained largely unexplored. Here, we present a diffusive N-cadherin functionalized hydrogel system, which provided cell-cell adhesion cues to modulate intercellular communications to significantly promote the formation of active neural network via thrombospondin-1 mediated neural communication and activation of TGF-β/Smad pathway. The dynamic assembly of N-cadherin at cell-hydrogel interface driven by adhered neurons effectively facilitated the reshaping of membrane protrusions to initiate intercellular adherens junctions. Further, this hydrogel system promisingly promoted neurological function recovery in rats following traumatic brain injury. Our study provides the principle of replicating diffusive cell adhesion molecules to mediate cell-cell adhesion in hydrogels, which may have broad applications in developing engineered biomaterials aimed at modulating cell fates in regeneration of various tissues. Cell-cell adhesion plays critical roles in maintaining and regulating cellular functions. Here, authors present a diffusive N-cadherin functionalized hydrogel that provides cell-cell adhesion cues to modulate intercellular communication to promote neural regeneration for treatment of traumatic brain injury.
科研通智能强力驱动
Strongly Powered by AbleSci AI