去细胞化
坐骨神经
神经外膜修复
神经导管
轴突
再生(生物学)
周围神经损伤
神经损伤
医学
细胞外基质
自愈水凝胶
神经纤维
生物医学工程
外科
解剖
材料科学
化学
组织工程
生物
细胞生物学
生物化学
高分子化学
作者
Tyler J. Meder,Travis A. Prest,Clint D. Skillen,Lucile Marchal,V. T. Yupanqui,Lorenzo Soletti,Paul A. Gardner,Jonathan Cheetham,Bryan N. Brown
标识
DOI:10.1038/s41536-021-00174-8
摘要
Nerve transection requires surgical intervention to restore function. The standard of care involves coaptation when a tension-free repair is achievable, or interposition of a graft or conduit when a gap remains. Despite advances, nerve gap injury is associated with unsatisfactory recovery. This study investigates the use of a decellularized, porcine nerve-derived hydrogel filler (peripheral nerve matrix, PNM) for conduits in an 8 mm rat sciatic nerve gap model. The decellularized tissue maintained multiple nerve-specific matrix components and nerve growth factors. This decellularized tissue was used to formulate hydrogels, which were deployed into conduits for nerve gap repair. Nerve recovery was assessed up to 24 weeks post injury by gait analysis, electrophysiology, and axon counting. Deployment of PNM within conduits was shown to improve electrophysiologic response and axon counts compared with those of empty conduit controls. These results indicate that PNM has potential benefits when used as a filler for conduits in nerve gap injuries.
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