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首页> 外文期刊>Progress in Neurobiology: An International Review Journal >Regeneration of peripheral nerves by nerve guidance conduits: Influence of design, biopolymers, cells, growth factors, and physical stimuli
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Regeneration of peripheral nerves by nerve guidance conduits: Influence of design, biopolymers, cells, growth factors, and physical stimuli

机译:神经引导管道的外周神经再生:设计,生物聚合物,细胞,生长因子和身体刺激的影响

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摘要

Injuries to the peripheral nervous system (PNS) cause neuropathies that lead to weakness and paralysis, poor or absent sensation, unpleasant and painful neuropathies, and impaired autonomic function. In this regard, implanted artificial nerve guidance conduits (NGCs) used to bridge an injured site may provide appropriate biochemical and biophysical guidance cues required to stimulate regeneration across a nerve gap and restore the function of PNS. Advanced conduit design and fabrication techniques have made it possible to fabricate auto graft-like structures in the NGCs with incredible precision. To this end, strategies involving the use of biopolymers, cells, growth factors, and physical stimuli have been developed over the past decades and have led to the development of varying NGCs, from simple hollow tubes to complex conduits that incorporate one or more guidance cues. This paper briefly reviews the recent progress in the development of these NGCs for nerve regeneration, focusing on the design and fabrication of NGCs, as well as the influence of biopolymers, cells, growth factors, and physical stimuli. The advanced techniques used to fabricate NGCs that incorporate cells/growth factors are also discussed, along with their merits and flaws. Key issues and challenges with regard to the development of NGCs have been identified and discussed, and recommendations for future research have been included.
机译:对外周神经系统(PNS)的伤害导致神经病,导致弱点和瘫痪,差或患病,令人不愉快和痛苦的神经病,以及自主神经功能受损。在这方面,用于桥接损伤部位的植入人造神经引导管道(NGC)可以提供刺激神经间隙中的再生所需的适当生物化学和生物物理引导提示,并恢复PNS的功能。先进的导管设计和制造技术使得可以以令人难以置信的精度制造在NGC中的自动移植物状结构。为此,在过去的几十年里已经开发了涉及使用生物聚合物,细胞,生长因子和物理刺激的策略,并导致了从简单的空心管到包含一个或多个引导线本的复杂导管的变化NGCs的发展。本文简要介绍了近期开发这些NGCS用于神经再生的进展,重点是NGCS的设计和制作,以及生物聚合物,细胞,生长因子和物理刺激的影响。还讨论了用于制造包含细胞/生长因子的NGC的先进技术以及它们的优点和缺陷。已经确定并讨论了关于NGCS发展的关键问题和挑战,并已包括未来研究的建议。

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