大鼠坐骨神经逆行自体移植人源羊膜与胶原神经膜的比较

Q3 Biochemistry, Genetics and Molecular Biology
Erin M. Wolfe , Sydney A. Mathis , Natalia de la Olivo Muñoz , Steven A. Ovadia , Zubin J. Panthaki
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引用次数: 1

摘要

人羊膜(hAM)和胶原神经包膜是一种生物材料,已被研究作为改善周围神经再生结果的治疗方法;然而,它们的功效还没有被比较过。本研究的目的是比较胶原蛋白和人羊膜神经包裹在啮齿类动物坐骨神经逆行移植模型中的效果。Lewis大鼠(n = 29)接受坐骨神经损伤和修复,用反向自体移植物联合无神经包膜(对照组)、胶原神经包膜或hAM神经包膜桥接10mm间隙。在基线和4、8和12周进行行为分析。在8周、10周和12周进行电生理研究。评估的其他结果包括12周时腓肠肌重量、神经粘连、轴突再生和瘢痕形成。与对照组相比,应用胶原蛋白和火腿神经包膜均可改善功能和组织学结果,实验组用火腿神经包膜治疗的改善程度更大。与对照动物相比,ham处理的动物轴突数量显著增加(p <0.05),神经周围纤维化明显少于对照组和胶原治疗组(p <0.05)。火腿中试验组腓肠肌重量与对照组腓肠肌重量之比显著高于对照组(p <0.05)。我们得出结论,与胶原神经包膜和对照组相比,火腿神经包膜是一种有前途的生物材料,可有效改善周围神经再生的结果,导致上神经再生和功能恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparison of human amniotic membrane and collagen nerve wraps around sciatic nerve reverse autografts in a rat model

Comparison of human amniotic membrane and collagen nerve wraps around sciatic nerve reverse autografts in a rat model

Human amniotic membrane (hAM) and collagen nerve wraps are biomaterials that have been investigated as therapies for improving outcomes of peripheral nerve regeneration; however, their efficacy has not been compared. The purpose of this study is to compare the efficacy of collagen and human amniotic membrane nerve wraps in a rodent sciatic nerve reverse autograft model. Lewis rats (n = 29) underwent sciatic nerve injury and repair in which a 10-mm gap was bridged with reverse autograft combined with either no nerve wrap (control), collagen nerve wrap or hAM nerve wrap. Behavioral analyses were performed at baseline and 4, 8 and 12 weeks. Electrophysiological studies were conducted at 8, 10 and 12 weeks. Additional outcomes assessed included gastrocnemius muscle weights, nerve adhesions, axonal regeneration and scarring at 12 weeks. Application of both collagen and hAM nerve wraps resulted in improvement of functional and histologic outcomes when compared with controls, with a greater magnitude of improvement for the experimental group treated with hAM nerve wraps. hAM-treated animals had significantly higher numbers of axons compared to control animals (p < 0.05) and significantly less perineural fibrosis than both control and collagen treated nerves (p < 0.05). The ratio of experimental to control gastrocnemius weights was significantly greater in hAM compared to control samples (p < 0.05). We conclude that hAM nerve wraps are a promising biomaterial that is effective for improving outcomes of peripheral nerve regeneration, resulting in superior nerve regeneration and functional recovery compared to collagen nerve wraps and controls.

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