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Schwann cells seeded in acellular nerve grafts improve functional recovery

机译:植入无细胞神经移植物中的雪旺细胞可改善功能恢复

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Introduction: This study evaluated whether Schwann cells (SCs) from different nerve sources transplanted into cold-preserved acellular nerve grafts (CP-ANGs) would improve functional regeneration compared with nerve isografts. Methods: SCs isolated and expanded from motor and sensory branches of rat femoral and sciatic nerves were seeded into 14mm CP-ANGs. Growth factor expression, axonal regeneration, and functional recovery were evaluated in a 14-mm rat sciatic injury model and compared with isografts. Results: At 14 days, motor or sensory-derived SCs increased expression of growth factors in CP-ANGs versus isografts. After 42 days, histomorphometric analysis found CP-ANGs with SCs and isografts had similar numbers of regenerating nerve fibers. At 84 days, muscle force generation was similar for CP-ANGs with SCs and isografts. SC source did not affect nerve fiber counts or muscle force generation. Conclusions: SCs transplanted into CP-ANGs increase functional regeneration to isograft levels; however SC nerve source did not have an effect.
机译:简介:这项研究评估了与神经同种异体移植相比,来自不同神经源的雪旺氏细胞(SCs)移植到冷保存的脱细胞神经移植物(CP-ANGs)中是否可以改善功能再生。方法:从大鼠股骨和坐骨神经的运动和感觉分支分离并扩增的SCs接种到14mm CP-ANGs中。在14毫米大鼠坐骨神经损伤模型中评估了生长因子的表达,轴突再生和功能恢复,并与同种异体移植进行了比较。结果:在第14天,与同种异体移植相比,运动或感觉衍生的SC可以增加CP-ANGs中生长因子的表达。 42天后,组织形态计量学分析发现具有SC和同种异体移植物的CP-ANG具有相似数量的再生神经纤维。在84天时,具有SC和同种异体移植物的CP-ANGs的肌肉力量生成相似。 SC来源不影响神经纤维计数或肌肉力量的产生。结论:移植到CP-ANGs中的SC将功能再生提高到同种异体移植水平。但是SC神经源没有作用。

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