首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Ciliary neurotrophic factor-coated polylactic-polyglycolic acid chitosan nerve conduit promotes peripheral nerve regeneration in canine tibial nerve defect repair.
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Ciliary neurotrophic factor-coated polylactic-polyglycolic acid chitosan nerve conduit promotes peripheral nerve regeneration in canine tibial nerve defect repair.

机译:睫状神经营养因子涂层的聚乳酸-聚乙醇酸壳聚糖神经导管可促进犬胫神经损伤修复中的周围神经再生。

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摘要

A variety of nerve conduits incorporated with chemical and biological factors have been developed to further stimulate nerve regeneration. Although most of the nerve guides in studies are basically limited to bridge a short gap of nerve defect in rat models, it is vital to evaluate effects of conduits on nerve regeneration over distance greater than 20 mm, or more clinically relevant nerve gap lengths in higher mammals. In this study, a poly(lactide-co-glycolide) (PLGA) nerve conduit, treated with pulsed plasma and coated with ciliary neurotrophic factor (CNTF) as well as chitosan, was used to repair 25-mm-long canine tibial nerve defects in eighteen cross-bred dogs. The canines were randomly divided into three groups (n = 6), a 25-mm segment of the tibial nerve was removed and replaced by a PLGA/chitosan-CNTF nerve conduit, PLGA/chitosan conduit and autologous nerve grafts were performed as the control. The results were evaluated by general observation, electromyogram testing, S-100 histological immunostaining, and image analysis at 3 months after operation. The histological results demonstrated that the PLGA/chitosan-CNTF conduits and PLGA/chitosan conduits were capable of leading the damaged axons through the lesioned area. Through the comparison of the three groups, the results in PLGA/chitosan-CNTF conduits group were better than that of PLGA/chitosan conduits group, while they were similar to autologous nerve grafts group. Therefore, CNTF-coated PLGA/chitosan nerve conduits could be an alternative artificial nerve conduit for nerve regeneration.
机译:已经开发出各种结合有化学和生物学因素的神经导管,以进一步刺激神经再生。尽管研究中的大多数神经引导剂基本上仅限于在大鼠模型中弥合神经缺损的短间隙,但评估导管对大于20 mm距离或更远的临床相关神经间隙长度的神经再生的影响至关重要哺乳动物。在这项研究中,使用经脉冲血浆处理并涂有睫状神经营养因子(CNTF)和壳聚糖的聚乳酸-乙交酯(PLGA)神经导管修复了25毫米长的犬胫骨神经缺损。在十八只杂种狗中。将犬随机分为三组(n = 6),取下胫骨神经的25毫米段,并用PLGA /壳聚糖-CNTF神经导管代替,将PLGA /壳聚糖导管和自体神经移植物作为对照。术后3个月通过一般观察,肌电图检查,S-100组织学免疫染色和图像分析对结果进行评估。组织学结果表明,PLGA /壳聚糖-CNTF导管和PLGA /壳聚糖导管能够引导受损的轴突穿过病变区域。通过三组比较,PLGA /壳聚糖-CNTF导管组的结果优于PLGA /壳聚糖导管组,与自体神经移植组相似。因此,CNTF涂层的PLGA /壳聚糖神经导管可能是神经再生的另一种人工神经导管。

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