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A nanofibrous PHBV tube with Schwann cell as artificial nerve graft contributing to Rat sciatic nerve regeneration across a 30-mm defect bridge

机译:具有雪旺氏细胞作为人工神经移植物的纳米纤维PHBV管,可通过30毫米缺损桥促进大鼠坐骨神经再生

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摘要

A nanofibrous PHBV nerve conduit has been used to evaluate its efficiency based on the promotion of nerve regeneration in rats. The designed conduits were investigated by physical, mechanical and microscopic analyses. The conduits were implanted into a 30-mm gap in the sciatic nerves of the rats. Four months after surgery, the regenerated nerves were evaluated by macroscopic assessments and histology. This polymeric conduit had sufficiently high mechanical properties to serve as a nerve guide. The results demonstrated that in the nanofibrous graft with cells, the sciatic nerve trunk had been reconstructed with restoration of nerve continuity and formatted nerve fibers with myelination. For the grafts especially the nanofibrous conduits with cells, muscle cells of gastrocnemius on the operated side were uniform in their size and structures. This study proves the feasibility of artificial conduit with Schwann cells for nerve regeneration by bridging a longer defect in a rat model.
机译:基于促进大鼠神经再生,纳米纤维PHBV神经导管已用于评估其效率。通过物理,机械和微观分析研究了设计的导管。将导管植入大鼠坐骨神经的30毫米间隙中。手术后四个月,通过宏观评估和组织学评估了再生神经。该聚合物导管具有足够高的机械性能以用作神经引导器。结果表明,在带有细胞的纳米纤维移植物中,坐骨神经干已被重建,恢复了神经的连续性,并使髓鞘形成的神经纤维发生了髓鞘化。对于移植物,尤其是带有细胞的纳米纤维导管,腓肠肌的肌肉细胞在手术侧的大小和结构均一。这项研究通过桥接更长的大鼠模型缺陷,证明了用雪旺氏细胞人工导管神经再生的可行性。

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