脚手架
自愈水凝胶
细胞外基质
脊髓损伤
再生(生物学)
组织工程
干细胞
神经组织工程
脊髓
生物医学工程
粘附
再生医学
医学
细胞生物学
材料科学
神经科学
生物
高分子化学
复合材料
作者
Zhengwei Cai,Yibo Gan,Chunyan Bao,Wu Wanjiang,Xue‐Bin Wang,Zetong Zhang,Qiang Zhou,Qiuning Lin,Yi Yang,Linyong Zhu
标识
DOI:10.1002/adhm.201900013
摘要
Photochemistry is considered to be a promising strategy for hydrogels to mimic the complex and dynamic properties of natural extracellular matrix. However, it is seldom applied in 3D tissue engineering and regenerative medicine due to the attenuation of light. In this study, phenyl azide photchemistry and optical fiber technology are first used to localize adhesive protein on the inner surface of the nerve guidance conduit in a 3D hydrogel scaffold. In vitro coculture assay of neural stem cells (NSCs) shows that photoimmobilization of collagen significantly improves the adhesion and survival of NSCs in the conduit, and exhibits synergistic effect with the sustainable release of growth factor. After implantation in transected spinal cord, the optimized hydrogel scaffold is found to improve the locomotion recovery of rats 12 weeks after spinal cord injury (SCI). Histological analysis suggests that the designed hydrogel scaffold provides a favorable biological niche for neuronal regeneration, thus producing directional neuron tissue and promoting the repair of SCI. This study demonstrates a promising hydrogel scaffold for SCI repair and provides the first understanding of the photoimmobilization of adhesive protein in a 3D hydrogel conduit concerning its functions on spinal cord tissue restoration.
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