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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Early changes in muscle atrophy and muscle fiber type conversion after spinal cord transection and peripheral nerve transection in rats
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Early changes in muscle atrophy and muscle fiber type conversion after spinal cord transection and peripheral nerve transection in rats

机译:大鼠脊髓横断和周围神经横断后肌肉萎缩和肌纤维类型转换的早期变化

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Background Spinal cord transection and peripheral nerve transection cause muscle atrophy and muscle fiber type conversion. It is still unknown how spinal cord transection and peripheral nerve transection each affect the differentiation of muscle fiber type conversion mechanism and muscle atrophy. The aim of our study was to evaluate the difference of muscle weight change, muscle fiber type conversion, and Peroxisome proliferator-activated receptor-γ coactivatior-1α (PGC-1α) expression brought about by spinal cord transection and by peripheral nerve transection. Methods Twenty-four Wistar rats underwent surgery, the control rats underwent a laminectomy; the spinal cord injury group underwent a spinal cord transection; the denervation group underwent a sciatic nerve transection. The rats were harvested of the soleus muscle and the TA muscle at 0 week, 1 week and 2 weeks after surgery. Histological examination was assessed using hematoxylin and eosin (H&E) staining and immunofluorescent staing. Western blot was performed with 3 groups. Results Both sciatic nerve transection and spinal cord transection caused muscle atrophy with the effect being more severe after sciatic nerve transection. Spinal cord transection caused a reduction in the expression of both sMHC protein and PGC-1α protein in the soleus muscle. On the other hand, sciatic nerve transection produced an increase in expression of sMHC protein and PGC-1α protein in the soleus muscle. The results of the expression of PGC-1α were expected in other words muscle atrophy after sciatic nerve transection is less than after spinal cord transection, however muscle atrophy after sciatic nerve transection was more severe than after spinal cord transection. Conclusion In the conclusion, spinal cord transection diminished the expression of sMHC protein and PGC-1α protein in the soleus muscle. On the other hand, sciatic nerve transection enhanced the expression of sMHC protein and PGC-1α protein in the soleus muscle.
机译:背景脊髓横断和周围神经横断导致肌肉萎缩和肌肉纤维类型转换。尚不清楚脊髓横断和周围神经横断如何影响肌纤维类型转换机制和肌肉萎缩的分化。我们研究的目的是评估脊髓横断和周围神经横断所引起的肌肉重量变化,肌肉纤维类型转换和过氧化物酶体增殖物激活的受体-γcoactivatior-1α(PGC-1α)表达的差异。方法24只Wistar大鼠进行手术,对照大鼠进行椎板切除术;脊髓损伤组行脊髓横断术;去神经组进行坐骨神经横切术。在手术后第0周,第1周和第2周收获比目鱼肌和TA肌。使用苏木精和曙红(H&E)染色和免疫荧光染色评估组织学检查。用3组进行蛋白质印迹。结果坐骨神经横断和脊髓横断均引起肌肉萎缩,坐骨神经横断后效果更为严重。脊髓横断导致比目鱼肌中sMHC蛋白和PGC-1α蛋白的表达减少。另一方面,坐骨神经横断导致比目鱼肌中sMHC蛋白和PGC-1α蛋白的表达增加。预期PGC-1α表达的结果换句话说,坐骨神经横切后的肌肉萎缩少于脊髓横切后,但是坐骨神经横切后的肌肉萎缩比脊髓横切后更严重。结论脊髓横断可减少比目鱼肌中sMHC蛋白和PGC-1α蛋白的表达。另一方面,坐骨神经横切增强比目鱼肌中sMHC蛋白和PGC-1α蛋白的表达。

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