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首页> 外文期刊>Biomaterials >Controlling dispersion of axonal regeneration using a multichannel collagen nerve conduit.
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Controlling dispersion of axonal regeneration using a multichannel collagen nerve conduit.

机译:使用多通道胶原蛋白神经导管控制轴突再生的分散。

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摘要

Single channel conduits are used clinically in nerve repair as an alternative to the autologous nerve graft. Axons regenerating across single channel tubes, however, may disperse resulting in inappropriate target reinnervation. This dispersion may be limited by multichannel nerve conduits as they resemble the structure of nerve multiple basal lamina tubes. In this study, we investigated the influence of channel number on the axonal regeneration using a series of 1-, 2-, 4-, and 7-channel collagen conduits and commercial (NeuraGen) single channel conduits. Nerve conduits were implanted in rats with a 1 cm gap of sciatic nerve. After four months, quantitative results of regeneration were evaluated with nerve morphometry and the accuracy of regeneration was assessed using retrograde tracing: two tracers being applied simultaneously to tibial and peroneal nerves to determine the percentage of motor neurons with double projections. Recovery of function was investigated with compound muscle action potential recordings and ankle motion analysis. We showed that the fabricated 1-channel and 4-channel conduits are superior to other types of conduits in axonal regeneration. Simultaneous tracing showed a significantly lower percentage of motor neurons with double projections after 2- and 4-channel compared with 1-channel conduit repair. This study shows the potential influence of multichannel guidance on limiting dispersion without decreasing quantitative results of regeneration.
机译:单通道导管临床上可用于神经修复,作为自体神经移植的替代方法。但是,轴突在单通道管中再生,可能会分散,导致不适当的靶标神经支配。这种分散可能受到多通道神经导管的限制,因为它们类似于神经多根基底叶片管的结构。在这项研究中,我们使用一系列的1、2、4和7通道胶原蛋白导管和商业(NeuraGen)单通道导管研究了通道数对轴突再生的影响。将神经导管植入坐骨神经间隙为1 cm的大鼠中。四个月后,通过神经形态学评估了定量的再生结果,并使用逆行描记法评估了再生的准确性:将两个示踪剂同时应用于胫骨和腓骨神经,以确定具有双重投射的运动神经元的百分比。通过复合肌肉动作电位记录和踝关节运动分析研究功能的恢复。我们显示,在轴突再生中,制造的1通道和4通道导管优于其他类型的导管。同时追踪显示,与1通道导管修复相比,在2通道和4通道后具有双重投影的运动神经元百分比显着降低。这项研究显示了多通道引导对限制分散的潜在影响,而不会降低再生的定量结果。

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