材料科学
神经导管
再生(生物学)
去细胞化
坐骨神经
细胞外基质
自愈水凝胶
组织工程
周围神经损伤
生物医学工程
解剖
细胞生物学
高分子化学
生物
医学
作者
Lizhao Yan,Shuang Liu,Jianwen Wang,Xiaoyue Ding,Yingsong Zhao,Nan Gao,Zishen Xia,Ming Li,Qianqian Wei,Oseweuba Valentine Okoro,Yanfang Sun,Lei Nie,Amin Shavandi,Guohua Jiang,Jianghai Chen,Lihong Fan,Yuxiong Weng
标识
DOI:10.1002/adfm.202402698
摘要
Abstract Peripheral nerve injury often leads to the loss of neurological functions due to the slow regeneration rate and inefficient functional reconstruction. Current clinical treatments using nerve guidance conduits (NGCs) still face challenges in providing a biomimetic microenvironment to promote nerve repair. Herein, decellularized extracellular matrix (dECM) is obtained from porcine Achilles tendon and crosslinked with 3‐amino‐4‐methoxybenzoic acid grafted gelatin (PAMB‐G) to obtain conductive hydrogels. Then, a novel nerve guidance conduit is developed by assembling poly(vinyl alcohol) (PVA) conduit and conductive ECM@PAMB‐G hydrogel. This bioengineered ECM@PAMB‐G/PVA conduit demonstrated excellent cytocompatibility, electrical conductivity, mechanical properties, and biodegradability. In vitro experiments confirmed that the ECM@PAMB‐G hydrogel significantly promotes the proliferation and migration of PC12 cells and primary Schwann cells, as well as the growth of dorsal root ganglion (DRG) axons. Furthermore, in vivo studies in a rat sciatic nerve model exhibited improvements in axonal regeneration, Schwann cell migration, myelin sheath formation, and functional recovery mediated by the ECM@PAMB‐G/PVA conduit. This work demonstrates the synergistic effects of extracellular matrix and electrical cues in enhancing peripheral nerve regeneration. The ECM@PAMB‐G/PVA nerve guidance conduit shows potential as an alternative to autografts for supporting peripheral nerve reconstruction.
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