首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Use of Natural Neural Scaffolds Consisting of Engineered Vascular Endothelial Growth Factor Immobilized on Ordered Collagen Fibers Filled in a Collagen Tube for Peripheral Nerve Regeneration in Rats
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Use of Natural Neural Scaffolds Consisting of Engineered Vascular Endothelial Growth Factor Immobilized on Ordered Collagen Fibers Filled in a Collagen Tube for Peripheral Nerve Regeneration in Rats

机译:包含工程血管内皮生长因子的天然神经支架固定在装满胶原管的有序胶原纤维中用于大鼠周围神经再生的用途。

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摘要

The search for effective strategies for peripheral nerve regeneration has attracted much attention in recent years. In this study, ordered collagen fibers were used as intraluminal fibers after nerve injury in rats. Vascular endothelial growth factor (VEGF) plays an important role in nerve regeneration, but its very fast initial burst of activity within a short time has largely limited its clinical use. For the stable binding of VEGF to ordered collagen fibers, we fused a collagen-binding domain (CBD) to VEGF through recombinant DNA technology. Then, we filled the ordered collagen fibers-CBD-VEGF targeting delivery system in a collagen tube to construct natural neural scaffolds, which were then used to bridge transected nerve stumps in a rat sciatic nerve transection model. After transplantation, the natural neural scaffolds showed minimal foreign body reactions and good integration into the host tissue. Oriented collagen fibers in the collagen tube could guide regenerating axons in an oriented manner to the distal, degenerating nerve segment, maximizing the chance of target reinnervation. Functional and histological analyses indicated that the recovery of nerve function in the natural neural scaffolds-treated group was superior to the other grafted groups. The guiding of oriented axonal regeneration and effective delivery systems surmounting the otherwise rapid and short-lived diffusion of growth factors in body fluids are two important strategies in promoting peripheral nerve regeneration. The natural neural scaffolds described take advantage of these two aspects and may produce synergistic effects. These properties qualified the artificial nerve conduits as a putative candidate system for the fabrication of peripheral nerve reconstruction devices.
机译:近年来,寻找有效的周围神经再生策略的研究引起了广泛关注。在这项研究中,有序的胶原纤维被用作大鼠神经损伤后的腔内纤维。血管内皮生长因子(VEGF)在神经再生中起着重要作用,但是其在短时间内非常快速的初始爆发性活动在很大程度上限制了其临床应用。为了使VEGF与有序胶原纤维稳定结合,我们通过重组DNA技术将胶原结合域(CBD)与VEGF融合。然后,我们在胶原蛋白管中填充有序的胶原纤维-CBD-VEGF靶向递送系统,以构建天然神经支架,然后将其用于在大鼠坐骨神经横断模型中桥接横切的神经残端。移植后,天然神经支架显示出最小的异物反应,并很好地整合到宿主组织中。胶原蛋白管中定向的胶原纤维可以定向方式将再生轴突引导至远端退化的神经节段,从而最大程度地实现了目标神经支配的机会。功能和组织学分析表明,自然神经支架治疗组的神经功能恢复优于其他移植组。定向的轴突再生和有效的传递系统的指导,克服了生长因子在体液中的迅速而短暂的扩散,是促进周围神经再生的两个重要策略。所描述的天然神经支架利用了这两个方面并且可以产生协同作用。这些特性使人造神经导管成为制造周围神经重建装置的公认候选系统。

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