丝素
再生(生物学)
电气导管
纤维接头
材料科学
神经导管
轴突
神经营养因子
周围神经损伤
生物医学工程
坐骨神经
丝绸
医学
外科
解剖
细胞生物学
复合材料
内科学
机械工程
生物
工程类
受体
作者
Yuting Cai,Qun Huang,Penghui Wang,Kaichuang Ye,Zhen Zhao,Haomin Chen,Zhenjing Liu,Hongwei Liu,Hoilun Wong,Mohsen Tamtaji,Kenan Zhang,Feng Xu,Guorui Jin,Lun Zeng,Jianbo Xie,Yucong Du,Zhigang Hu,Dazhi Sun,Jinbao Qin,Xinwu Lu
标识
DOI:10.1002/adhm.202200755
摘要
Abstract Diabetic patients suffer from peripheral nerve injury with slow and incomplete regeneration owing to hyperglycemia and microvascular complications. This study develops a graphene‐based nerve guidance conduit by incorporating natural double network hydrogel and a neurotrophic concentration gradient with non‐invasive treatment for diabetics. GelMA/silk fibroin double network hydrogel plays quadruple roles for rapid setting/curing, suitable mechanical supporting, good biocompatibility, and sustainable growth factor delivery. Meanwhile, graphene mesh can improve the toughness of conduit and enhance conductivity of conduit for regeneration. Here, novel silk tapes show quick and tough adhesion of wet tissue by dual mechanism to replace suture step. The in vivo results demonstrate that gradient concentration of netrin‐1 in conduit have better performance than uniform concentration caused by chemotaxis phenomenon for axon extension, remyelination, and angiogenesis. Altogether, GelMA/silk graphene conduit with gradient netrin‐1 and dry double‐sided adhesive tape can significantly promote repairing of peripheral nerve injury and inhibit the atrophy of muscles for diabetics.
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