首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Efect of longitudinally oriented collagen conduit combined with nerve growth factor on nerve regeneration after dog sciatic nerve injury
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Efect of longitudinally oriented collagen conduit combined with nerve growth factor on nerve regeneration after dog sciatic nerve injury

机译:纵向胶原管与神经生长因子联合神经生长因子对犬坐骨神经损伤神经再生的影响

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摘要

The research on artificial nerve conduits has become a focus of study in peripheral nerve reconstruction so as a possible replacement for the treatment of autologous nerve grafts in clinics. In this study, we used longitudinally oriented collagen conduit (LOCC) combined with nerve growth factor (NGF) to reconstruct long distance of sciatic nerve defects (35 mm) in adult dog model. The long term follow-up evaluation demonstrated that the LOCC/NGF conduit allowed functional and morphological nerve regeneration at the transection site of the injured sciatic nerve. Furthermore, the functional study confirmed that when NGF was loaded onto LOCC it promoted a better recovery of regenerated axons than LOCC alone. The gastrocnemius muscle mass in the LOCC/NGF group was significantly greater than in the LOCC alone group. The results indicated that when LOCC conduit combined with NGF it would provide a preferential environment for sciatic nerve regeneration. (C) 2017 Wiley Periodicals, Inc.
机译:人工神经管道的研究已成为外周神经重建研究的重点,以便作为诊所治疗自体神经移植物的可能替代。 在这项研究中,我们使用纵向导向的胶原蛋白导管(LOCC)与神经生长因子(NGF)结合,以重建成人狗模型中的长距离坐骨神经缺陷(35mm)。 长期后续评估证明了LOCC / NGF导管允许在受伤坐骨神经的横截面现场进行官能和形态神经再生。 此外,功能性研究证实,当NGF加载到Locc上时,它促进了比单独的LOCC更好地恢复再生轴突。 LocC / NGF组的腓肠肌肌肉肿块明显大于LOCC单独组。 结果表明,当Locc导管结合NGF时,它将提供坐骨神经再生的优先环境。 (c)2017 Wiley期刊,Inc。

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