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神经引导导管的策略设计与制作:用于周围神经再生。

Strategic Design and Fabrication of Nerve Guidance Conduits for Peripheral Nerve Regeneration.

机构信息

Division of Biomedical Engineering College of Engineering University of Saskatchewan, 57 campus drive, SK S7N 5A9, Saskatoon, SK, Canada.

Department of Anatomy and Cell Biology College of Medicine University of Saskatchewan, Saskatoon, SK S7N 5A2, Canada.

出版信息

Biotechnol J. 2018 Jul;13(7):e1700635. doi: 10.1002/biot.201700635. Epub 2018 Feb 27.

Abstract

Nerve guidance conduits (NGCs) have been drawing considerable attention as an aid to promote regeneration of injured axons across damaged peripheral nerves. Ideally, NGCs should include physical and topographic axon guidance cues embedded as part of their composition. Over the past decades, much progress has been made in the development of NGCs that promote directional axonal regrowth so as to repair severed nerves. This paper briefly reviews the recent designs and fabrication techniques of NGCs for peripheral nerve regeneration. Studies associated with versatile design and preparation of NGCs fabricated with either conventional or rapid prototyping (RP) techniques have been examined and reviewed. The effect of topographic features of the filler material as well as porous structure of NGCs on axonal regeneration has also been examined from the previous studies. While such strategies as macroscale channels, lumen size, groove geometry, use of hydrogel/matrix, and unidirectional freeze-dried surface are seen to promote nerve regeneration, shortcomings such as axonal dispersion and wrong target reinnervation still remain unsolved. On this basis, future research directions are identified and discussed.

摘要

神经引导导管(NGC)作为一种辅助手段,可以促进受损外周神经中损伤轴突的再生,因此受到了广泛关注。理想情况下,NGC 应包含物理和地形轴突导向线索,这些线索是其组成部分。在过去的几十年中,在开发促进定向轴突再生以修复断裂神经的 NGC 方面已经取得了很大进展。本文简要综述了用于周围神经再生的 NGC 的最新设计和制造技术。研究了与使用传统或快速原型制造技术制造的 NGC 的多功能设计和制备相关的研究,并对填充材料的地形特征以及 NGC 的多孔结构对轴突再生的影响进行了审查。虽然宏观通道、管腔大小、槽几何形状、水凝胶/基质的使用以及单向冻干表面等策略被认为可以促进神经再生,但轴突分散和错误的靶神经再支配等缺点仍然没有得到解决。在此基础上,确定并讨论了未来的研究方向。

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