细胞外基质
再生(生物学)
自愈水凝胶
去细胞化
脚手架
脊髓损伤
生物医学工程
组织工程
材料科学
胶质瘢痕
间充质干细胞
再生医学
神经干细胞
粘附
细胞生物学
脊髓
干细胞
医学
生物
神经科学
复合材料
高分子化学
作者
Zheng Chen,Lin Wang,Chichi Chen,Jie Sun,Junchao Luo,Wenguo Cui,Can Zhu,Xiaozhong Zhou,Xingzhi Liu,Huilin Yang,Qin Shi
标识
DOI:10.1038/s41427-022-00368-6
摘要
Abstract Cell-derived extracellular matrix (ECM) has been applied in spinal cord injury (SCI) regeneration because of its various biological functions. However, insufficient mechanical properties limit its wide application. Herein, we developed GelMA/ECM hydrogel fibrous scaffolds (GelMA/ECM scaffolds) that can recruit and enhance the differentiation of neural stem cells (NSCs) by electrospinning and decellularization techniques. Moreover, the GelMA/ECM scaffolds had good mechanical properties and reinforced cell adhesion and proliferation. Compared to GelMA hydrogel fibrous scaffolds (GelMA scaffolds), GelMA/ECM scaffolds promoted more NSCs toward neurons by markedly enhancing the expression of MAP-2 and Tuj-1 and decreasing GFAP expression. In addition, the GelMA/ECM scaffolds significantly reduced the proportion of M1-phenotype macrophages, which is favorable for SCI repair. In vivo, the GelMA/ECM scaffolds recruited NSCs at the injured site, promoted neuron regeneration, and reduced the formation of glial scars and the inflammatory response, which further led to a significant improvement in the functional recovery of SCI. Therefore, this scaffold shows potential in regenerative medicine, mainly in SCI.
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