...
首页> 外文期刊>Journal of biomedical materials research, Part A >Recovery process of sciatic nerve defect with novel bioabsorbable collagen tubes packed with collagen filaments in dogs
【24h】

Recovery process of sciatic nerve defect with novel bioabsorbable collagen tubes packed with collagen filaments in dogs

机译:新型生物可吸收胶原蛋白管填充胶原丝修复犬坐骨神经缺损的过程

获取原文
获取原文并翻译 | 示例
           

摘要

Autologous nerve graft is the most commonly applied treatment for the patients with peripheral nerve defect, while application is limited because of tissue availability and unfavorable donor site morbidity. To overcome this problem, peripheral nerve regeneration using a nerve conduit has been studied. Especially, nerve conduit using biodegradable materials has been considered promising. In this study, a potential of collagen nerve conduit has been studied with special reference to the regenerating process of a peripheral nerve. Twelve adult female Beagle dogs weighting 10-12 kg were used. The peroneal nerve was cut to make a 30-mm defect. The nerve defect was bridged by the collagen artificial nerve conduit. Comprehensive functional, electrophysiological, morphometrical, and histlogical analyses were performed until one year after operation. The wet weight of tibialis anterior muscles was only 32.4% of the healthy side at 24 weeks, which was recovered to 77.4% at 52 weeks after denervation. Electrophysiological evaluation of tibialis anterior muscle belly showed polyphasic wave at 52 weeks after implantation, which was almost half amplitude as compared with that of control. The diameters of myelinated nerve fibers thickened day by day, and the average diameter was 5.16 μm at PFN, 3.91 μm at CG, and 3.75 μm at DFN, and average thickness of myelin sheath was 0.94 lm at PFN, 0.46 μm at CG, and 0.55 μm at DFN after 52 weeks. The distribution of myelinated nerve fiber size in the 52 weeks group was distinctly bimodal with the major peak at approximately 2-4 μm and the minor peak at 10-12 μm. These .ndings were consistent with the distribution of the normal nerve .ber. This study proves the feasibility of the collagen arti.cial nerve conduit for promoting nerve regeneration, raises new possibilities of seeking alternatives to autograft for nerve repair. The results from this study showed detailed process of morphological, electrophysiological, and functional recovery of the regenerated nerve, which would provide scientific background for this novel therapy.
机译:自体神经移植是周围神经缺损患者最常用的治疗方法,但由于组织可利用性和不利的供体部位发病率,应用受到限制。为了克服这个问题,已经研究了使用神经导管的周围神经再生。特别地,使用可生物降解材料的神经导管被认为是有希望的。在这项研究中,已经研究了胶原神经导管的潜力,并特别参考了周围神经的再生过程。使用了十二只成年雌性比格犬,体重为10-12公斤。腓骨神经被切成30毫米的缺损。神经缺损被胶原人工神经导管桥接。进行全面的功能,电生理,形态和组织学分析,直到术后一年。胫前肌的湿重在24周时仅为健康侧的32.4%,在去神经后52周时恢复到77.4%。胫骨前肌腹部的电生理评估显示,植入52周后出现多相波,与对照组相比,振幅几乎降低了一半。髓鞘神经纤维的直径日趋增厚,在PFN处的平均直径为5.16μm,在CG处的平均直径为3.91μm,在DFN处的平均直径为3.75μm,在PFN处的髓鞘平均厚度为0.94 lm,在CG处为0.46μm,并且52周后在DFN处为0.55μm。 52周组有髓神经纤维大小的分布明显是双峰的,主峰在大约2-4μm,次峰在10-12μm。这些发现与正常神经纤维的分布是一致的。这项研究证明了胶原关节神经导管促进神经再生的可行性,为寻找替代自体神经修复的替代品提供了新的可能性。这项研究的结果显示了再生神经形态,电生理和功能恢复的详细过程,这将为这种新疗法提供科学背景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号