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Induction of rat facial nerve regeneration by functional collagen scaffolds

机译:功能性胶原蛋白支架诱导大鼠面神经再生

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Nerve conduit provides a promising strategy for nerve regeneration, and the proper microenvironment in the lumen could improve the regeneration. Our previous work had demonstrated that linear ordered collagen scaffold (LOCS) could effectively guide the oriented growth of axons. Laminin is known as an important nerve growth promoting factor and can facilitate the growth cone formation. In addition, ciliary neurotrophic factor (CNTF) and brain-derived neurotrophic factor (BDNF) can effectively improve the nerve regeneration after nerve injuries. However, in practice, diffusion caused by the body fluids is the major obstacle in their applications. To retain CNTF or BDNF on the scaffolds, we produced collagen binding CNTF (CBD-CNTF), collagen binding BDNF (CBD-BDNF) and laminin binding CNTF (LBD-CNTF), laminin binding BDNF (LBD-BDNF) respectively. In this work, we developed laminin modified LOCS fibers (L × LOCS) by chemical cross-linking LOCS fibers with laminin. Collagen binding or laminin binding neurotrophic factors were combined with LOCS or L × LOCS, and then filled them into the collagen nerve conduit. They were found to guide the ordered growth of axons, and improve the nerve functional recovery in the rat facial nerve transection model. The combination of CNTF and BDNF greatly enhanced the facial nerve regeneration and functional recovery.
机译:神经导管为神经再生提供了有希望的策略,并且管腔中适当的微环境可以改善神经再生。我们以前的工作表明,线性有序胶原蛋白支架(LOCS)可以有效地指导轴突的定向生长。层粘连蛋白是重要的神经生长促进因子,可促进生长锥的形成。此外,睫状神经营养因子(CNTF)和脑源性神经营养因子(BDNF)可以有效改善神经损伤后的神经再生。然而,实际上,由体液引起的扩散是其应用中的主要障碍。为了在支架上保留CNTF或BDNF,我们分别产生了胶原结合CNTF(CBD-CNTF),胶原结合BDNF(CBD-BDNF)和层粘连蛋白结合CNTF(LBD-CNTF),层粘连蛋白结合BDNF(LBD-BDNF)。在这项工作中,我们通过将LOCS纤维与层粘连蛋白进行化学交联,开发了层粘连蛋白改性的LOCS纤维(L×LOCS)。将胶原结合或层粘连蛋白结合神经营养因子与LOCS或L×LOCS结合,然后将它们填充到胶原神经导管中。发现它们可以指导轴突的有序生长,并改善大鼠面神经横断模型中的神经功能恢复。 CNTF和BDNF的结合极大地增强了面神经的再生和功能恢复。

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