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Chitosan-film enhanced chitosan nerve guides for long-distance regeneration of peripheral nerves.

机译:壳聚糖膜增强壳聚糖神经导管用于周围神经的长距离再生。

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摘要

Biosynthetic nerve grafts are developed in order to complement or replace autologous nerve grafts for peripheral nerve reconstruction. Artificial nerve guides currently approved for clinical use are not widely applied in reconstructive surgery as they still have limitations especially when it comes to critical distance repair. Here we report a comprehensive analysis of fine-tuned chitosan nerve guides (CNGs) enhanced by introduction of a longitudinal chitosan film to reconstruct critical length 15 mm sciatic nerve defects in adult healthy Wistar or diabetic Goto-Kakizaki rats. Short and long term investigations demonstrated that the CNGs enhanced by the guiding structure of the introduced chitosan film significantly improved functional and morphological results of nerve regeneration in comparison to simple hollow CNGs. Importantly, this was detectable both in healthy and in diabetic rats (short term) and the regeneration outcome almost reached the outcome after autologous nerve grafting (long term). Hollow CNGs provide properties likely leading to a wider clinical acceptance than other artificial nerve guides and their performance can be increased by simple introduction of a chitosan film with the same advantageous properties. Therefore, the chitosan film enhanced CNGs represent a new generation medical device for peripheral nerve reconstruction.
机译:开发生物合成神经移植物是为了补充或替代用于周围神经重建的自体神经移植物。目前被批准用于临床的人工神经导管尚未广泛应用于重建手术,因为它们仍然存在局限性,特别是在关键距离修复方面。在这里,我们报告通过引入纵向壳聚糖膜来增强成年健康Wistar或糖尿病Goto-Kakizaki大鼠的临界长度15 mm坐骨神经缺损的增强,对微调的壳聚糖神经向导(CNG)进行了全面分析。短期和长期研究表明,与简单的空心CNG相比,通过引入的壳聚糖膜的引导结构增强的CNG显着改善了神经再生的功能和形态学结果。重要的是,这在健康大鼠和糖尿病大鼠中都可以检测到(短期),并且自体神经移植后的再生结果几乎达到了(长期)。空心CNG提供的特性可能会比其他人工神经导向器带来更广泛的临床接受度,并且可以通过简单地引入具有相同优势特性的壳聚糖膜来提高其性能。因此,壳聚糖膜增强的CNG代表了用于外周神经重建的新一代医疗设备。

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