首页> 美国卫生研究院文献>Tissue Engineering. Part A >Acceleration of Peripheral Nerve Regeneration through Asymmetrically Porous Nerve Guide Conduit Applied with Biological/Physical Stimulation
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Acceleration of Peripheral Nerve Regeneration through Asymmetrically Porous Nerve Guide Conduit Applied with Biological/Physical Stimulation

机译:通过不对称多孔神经引导导管与生物/物理刺激相结合促进周围神经再生

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摘要

Sufficient functional restoration of damaged peripheral nerves is a big clinical challenge. In this study, a nerve guide conduit (NGC) with selective permeability was prepared by rolling an asymmetrically porous polycaprolactone/Pluronic F127 membrane fabricated using a novel immersion precipitation method. Dual stimulation (nerve growth factor [NGF] as a biological stimulus and low-intensity pulse ultrasound [US] as a physical stimulus) was adapted to enhance nerve regeneration through an NGC. The animal study revealed that each stimulation (NGF or US) has a positive effect to promote the peripheral nerve regeneration through the NGC, however, the US-stimulated NGC group allowed more accelerated nerve regeneration compared with the NGF-stimulated group. The NGC group that received dual stimulation (NGF and US) showed more effective nerve regeneration behavior than the groups that received a single stimulation (NGF or US). The asymmetrically porous NGC with dual NGF and US stimulation may be a promising strategy for the clinical treatment of delayed and insufficient functional recovery of a peripheral nerve.
机译:对受损的周围神经进行充分的功能恢复是一项重大的临床挑战。在这项研究中,通过滚动使用新型浸没沉淀法制备的不对称多孔聚己内酯/ Pluronic F127膜来制备具有选择性渗透性的神经引导导管(NGC)。双重刺激(神经生长因子[NGF]作为一种生物刺激,低强度脉冲超声[US]作为一种物理刺激)被调整为通过NGC增强神经再生。动物实验显示,每种刺激(NGF或US)对通过NGC促进周围神经再生均具有积极作用,但是,与NGF刺激组相比,US刺激的NGC组可使神经再生更快。与接受单刺激的组(NGF或US)相比,接受双刺激的NGC组(NGF和US)显示出更有效的神经再生行为。具有双重NGF和US刺激的非对称多孔NGC可能是临床治疗周围神经延迟和功能恢复不足的有前途的策略。

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