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用于周围神经修复的可生物降解原花青素交联明胶导管的制备与评价

Fabrication and evaluation of a biodegradable proanthocyanidin-crosslinked gelatin conduit in peripheral nerve repair.

作者信息

Liu Bai-Shuan

机构信息

Department of Radiological Technology, Central Taiwan University of Science and Technology, Taichung, Taiwan.

出版信息

J Biomed Mater Res A. 2008 Dec 15;87(4):1092-102. doi: 10.1002/jbm.a.31916.

Abstract

This study proposed a novel and biodegradable nerve guide conduit in its applicability to peripheral nerve regeneration. A naturally occurring proanthocyanidin (PA) was selected as a cross-linking reagent in preparing the PA-crosslinked gelatin (PCG) conduit. Experimental results indicate that 5 wt % of PA was optimal in the complete cross-linking reaction in the PCG conduit. The PCG conduit was brownish and round with a rough outer surface whereas its inner lumen was smooth. The cross-linked networks of the PCG conduit resisted enzymatic hydrolysis under in vitro degradation studies. PA and gelatin were released from the soaked PCG conduit. During the release phase, the concentrations of PA, gelatin, and PCG-soaking solutions were not only nontoxic but also promoted the viability and growth of Schwann cells. The PCG conduit more effectively supported cell attachment and growth. The effectiveness of the PCG conduit as a guidance channel was studied when it was used to repair a 10 mm gap in the rat sciatic nerve. Throughout the 8-week experimental period, the peak amplitude and area under the muscle action potential curve both increased with the recovery period. Histological observations revealed that various regenerated nerve fibers crossed through and beyond the gap region. These results suggest that the PCG conduit can be a candidate for peripheral nerve repair.

摘要

本研究提出了一种新型的可生物降解神经导管,并探讨了其在周围神经再生中的适用性。在制备原花青素(PA)交联明胶(PCG)导管时,选用天然存在的原花青素作为交联剂。实验结果表明,5 wt%的PA在PCG导管的完全交联反应中是最佳的。PCG导管呈褐色,圆形,外表面粗糙,而其内腔光滑。在体外降解研究中,PCG导管的交联网络能抵抗酶解。PA和明胶从浸泡后的PCG导管中释放出来。在释放阶段,PA、明胶和PCG浸泡液的浓度不仅无毒,而且能促进雪旺细胞的活力和生长。PCG导管更有效地支持细胞附着和生长。当PCG导管用于修复大鼠坐骨神经10毫米缺损时,研究了其作为引导通道的有效性。在整个8周的实验期内,肌肉动作电位曲线的峰值幅度和曲线下面积均随恢复时间增加。组织学观察显示,各种再生神经纤维穿过并超越了缺损区域。这些结果表明,PCG导管可作为周围神经修复的候选材料。

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