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Tacrolimus reduces scar formation and promotes sciatic nerve regeneration

机译:他克莫司减少疤痕形成并促进坐骨神经再生

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A sciatic nerve transection and repair model was established in Sprague-Dawley rats by transecting the tendon of obturator internus muscle in the greater sciatic foramen and suturing with nylon sutures. The models were treated with tacrolimus gavage (4 mg/kg per day) for 0, 2, 4 and 6 weeks. Specimens were harvested at 6 weeks of intragastric administration. Masson staining revealed that the collagen fiber content and scar area in the nerve anastomosis of the sciatic nerve injury rats were significantly reduced after tacrolimus administration. Hematoxylin-eosin staining showed that tacrolimus significantly increased myelinated nerve fiber density, average axon diameter and myelin sheath thickness. Intragastric administration of tacrolimus also led to a significant increase in the recovery rate of gastrocnemius muscle wet weight and the sciatic functional index after sciatic nerve injury. The above indices were most significantly improved at 6 weeks after of tacrolimus gavage. The myelinated nerve fiber density in the nerve anastomosis and the sciatic nerve functions had a significant negative correlation with the scar area, as detected by Spearman's rank correlation analysis. These findings indicate that tacrolimus can promote peripheral nerve regeneration and accelerate the recovery of neurological function through the reduction of scar formation. Research Highlights Tacrolimus can reduce collagen fiber content and scar area in nerve anastomosis of sciatic nerve injury in rats.Tacrolimus increases myelinated nerve fiber density, average axon diameter and myelin sheath thickness in nerve anastomosis of sciatic nerve injury in rats.Tacrolimus promotes neuronal functional recovery in rats with sciatic nerve injury.The myelinated nerve fiber density and sciatic nerve function index are negatively related to the scar area.Tacrolimus reduces scar formation, thus promoting peripheral nerve regeneration and accelerating the recovery of neurological function.
机译:通过在较大的坐骨神经孔中切断闭孔内膜肌腱并用尼龙缝线缝合,在Sprague-Dawley大鼠中建立坐骨神经横断和修复模型。用他克莫司灌胃(每天4 mg / kg)治疗模型0、2、4和6周。在胃内给药6周时收集标本。 Masson染色显示,他克莫司给药后,坐骨神经损伤大鼠神经吻合处的胶原纤维含量和疤痕面积明显减少。苏木精-伊红染色显示他克莫司显着增加了髓鞘神经纤维密度,平均轴突直径和髓鞘厚度。他克莫司的胃内给药还导致坐骨神经损伤后腓肠肌湿重的恢复率和坐骨神经功能指数的显着增加。他克莫司灌胃后6周,上述各项指标的改善最为明显。用Spearman秩相关分析可知,神经吻合和坐骨神经功能中的有髓神经纤维密度与瘢痕面积呈显着负相关。这些发现表明他克莫司可通过减少瘢痕形成来促进周围神经再生并加速神经功能的恢复。他克莫司可减少大鼠坐骨神经损伤神经吻合中胶原纤维含量和疤痕面积;他克莫司可增加大鼠坐骨神经损伤神经吻合中的髓鞘神经纤维密度,平均轴突直径和髓鞘厚度。他克莫司促进神经元功能恢复在坐骨神经损伤大鼠中,髓鞘神经纤维密度和坐骨神经功能指数与疤痕面积呈负相关,他克莫司减少了疤痕形成,从而促进了周围神经的再生并加速了神经功能的恢复。

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