首页> 美国卫生研究院文献>Lippincott Williams Wilkins Open Access >Rat Sciatic Nerve Reconstruction Across a 30 mm Defect Bridged by an Oriented Porous PHBV Tube With Schwann Cell as Artificial Nerve Graft
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Rat Sciatic Nerve Reconstruction Across a 30 mm Defect Bridged by an Oriented Porous PHBV Tube With Schwann Cell as Artificial Nerve Graft

机译:大鼠坐骨神经重建跨30毫米缺损的定向多孔PHBV管与施旺细胞作为人工神经移植桥接。

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摘要

An oriented poly(3-hydroxybutyrate-co-3-hydroxyvalerate) nerve conduit has been used to evaluate its efficiency based on the promotion of peripheral nerve regeneration in rats. The oriented porous micropatterned artificial nerve conduit was designed onto the micropatterned silicon wafers, and then their surfaces were modified with oxygen plasma to increase cell adhesion. The designed conduits were investigated by cell culture analyses with Schwann cells (SCs). The conduits were implanted into a 30 mm gap in sciatic nerves of rats. Four months after surgery, the regenerated nerves were monitored and evaluated by macroscopic assessments and histology and behavioral analyses. Results of cellular analyses showed suitable properties of designed conduit for nerve regeneration. The results demonstrated that in the polymeric graft with SCs, the rat sciatic nerve trunk had been reconstructed with restoration of nerve continuity and formatted nerve fibers with myelination. Histological results demonstrated the presence of Schwann and glial cells in regenerated nerves. Functional recovery such as walking, swimming, and recovery of nociceptive function was illustrated for all the grafts especially conduits with SCs. This study proves the feasibility of the artificial nerve graft filled with SCs for peripheral nerve regeneration by bridging a longer defect in an animal model.
机译:定向聚(3-羟基丁酸酯-co-3-羟基戊酸酯)神经导管已被用来评估其基于促进大鼠周围神经再生的效率。将定向的多孔微图案化人工神经导管设计到微图案化硅晶片上,然后用氧等离子体修饰其表面以增加细胞粘附。通过使用雪旺氏细胞(SCs)进行细胞培养分析来研究设计的导管。将导管植入大鼠坐骨神经中30 mm的间隙中。手术四个月后,通过宏观评估,组织学和行为分析对再生神经进行监测和评估。细胞分析的结果表明,所设计的神经再生导管具有适当的特性。结果表明,在SCs聚合物移植物中,大鼠坐骨神经干被重建,恢复了神经的连续性,并形成了髓鞘化的神经纤维。组织学结果表明再生神经中存在雪旺氏细胞和神经胶质细胞。对于所有移植物,特别是具有SC的导管,均显示了功能恢复,如行走,游泳和伤害感受功能的恢复。这项研究通过弥合较长的动物模型缺陷,证明了用SC填充的人工神经移植物对周围神经再生的可行性。

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