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神经特异性细胞外基质水凝胶促进神经间隙损伤后的功能再生。

Nerve-specific extracellular matrix hydrogel promotes functional regeneration following nerve gap injury.

作者信息

Meder T, Prest T, Skillen C, Marchal L, Yupanqui V T, Soletti L, Gardner P, Cheetham J, Brown B N

机构信息

McGowan Institute for Regenerative Medicine, University of Pittsburgh, Pittsburgh, PA, USA.

Department of Bioengineering, Swanson School of Engineering, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

NPJ Regen Med. 2021 Oct 25;6(1):69. doi: 10.1038/s41536-021-00174-8.

Abstract

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.

摘要

神经横断需要手术干预来恢复功能。标准治疗方法是在能够实现无张力修复时进行端端吻合,或者在存在间隙时植入移植物或导管。尽管取得了进展,但神经间隙损伤的恢复情况仍不尽人意。本研究在大鼠8毫米坐骨神经间隙模型中,研究了一种脱细胞猪神经源性水凝胶填充物(周围神经基质,PNM)用于导管的情况。脱细胞组织保留了多种神经特异性基质成分和神经生长因子。这种脱细胞组织被用于制备水凝胶,然后将其植入导管用于神经间隙修复。通过步态分析、电生理学和轴突计数,在损伤后长达24周的时间里评估神经恢复情况。与空导管对照组相比,在导管内植入PNM可改善电生理反应和轴突计数。这些结果表明,PNM作为神经间隙损伤导管填充物具有潜在益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f315/8546053/64ef9a46871f/41536_2021_174_Fig1_HTML.jpg

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