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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >The Delayed Repair of Sciatic Nerve Defects with Tissue-engineered Nerve Grafts in Rats
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The Delayed Repair of Sciatic Nerve Defects with Tissue-engineered Nerve Grafts in Rats

机译:组织工程神经移植物对大鼠坐骨神经缺损的延迟修复

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Abstract: The purpose of this study was to evaluate the feasibility of using tissue-engineered nerve grafts for delayed repair of peripheral nerve defects. A 1-month delayed, 10-mm long sciatic nerve defect was created for rats, which were divided into three grafted groups and a non-grafted group. For bridging the nerve defects, the rats in three grafted groups were subjected to surgical repair with tissue-engineered nerve grafts made of a chitosan/polyglycolic acid (PGA) conduit filled with neural stem cells (NSCs), chitosan/PGA conduits, and autologous nerve grafts, respectively. At 3 months after nerve grafting, the data from electrophysiology, retrograde tracing and histological investigation revealed that the better outcomes in sciatic nerve regeneration and target muscle re-innervation were achieved in three grafted groups as compared to those in non-grafted group without major differences between three grafted groups. Our results suggest that grafting of chitosan/PGA conduits might be a promising technique for repairing peripheral nerve injuries after a 1-month delay, while introduction of NSCs seem to show no significant additional benefits to regenerative outcomes.
机译:摘要:本研究的目的是评估使用组织工程神经移植物延迟修复周围神经缺损的可行性。为大鼠创建了一个1个月的延迟的10毫米长的坐骨神经缺损,将其分为三个移植组和一个非移植组。为了弥合神经缺损,将三个移植组的大鼠接受由组织工程化的神经移植物进行的外科手术修复,该神经移植物由填充有神经干细胞(NSC)的壳聚糖/聚乙醇酸(PGA)导管,壳聚糖/ PGA导管和自体神经移植物。神经移植后3个月,电生理,逆行追踪和组织学研究的数据显示,与非移植组相比,三个移植组在坐骨神经再生和靶肌再支配方面取得了更好的结果,无显着差异在三个嫁接组之间。我们的研究结果表明,壳聚糖/ PGA导管的移植可能是延迟1个月后修复周围神经损伤的有前途的技术,而引入NSC似乎对再生结局没有明显的好处。

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