首页> 美国卫生研究院文献>The Journal of Spinal Cord Medicine >Abundance in proteins expressed after functional electrical stimulation cycling or arm cycling ergometry training in persons with chronic spinal cord injury
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Abundance in proteins expressed after functional electrical stimulation cycling or arm cycling ergometry training in persons with chronic spinal cord injury

机译:慢性脊髓损伤患者进行功能性电刺激循环或手臂循环测功训练后表达的蛋白质丰富

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摘要

>Study design: Longitudinal design.>Objectives: The study determined the effects of two forms of exercise training on the abundance of two proteins, (glucose transporter-4 [GLUT-4], adenosine monophosphate kinase [AMPK]) involved in glucose utilization and the transcriptional coactivator that regulates the genes involved in energy metabolism and mitochondrial biogenesis (peroxisome proliferator-activated receptor (PPAR) coactivator 1 alpha [PGC-1α]), in muscles in men with chronic motor-complete spinal cord injury (SCI).>Settings: Clinical trial at a Medical Center.>Methods: Nine men with chronic motor-complete SCI participated in functional electrical stimulation lower extremity cycling (FES-LEC; n = 4) or arm cycling ergometer (arm-cycling ergometer [ACE]; n = 5) 5 days/week for 16 weeks. Whole body composition was measured by dual energy X-ray absorptiometry. An intravenous glucose tolerance test was performed to measure glucose effectiveness (Sg) and insulin sensitivity (Si). Muscle biopsies of the right vastus lateralis (VL) and triceps muscles were collected one week prior to and post the exercise training intervention.>Results: Neither training intervention altered body composition or carbohydrate metabolism. GLUT-4 increased by 3.8 fold in the VL after FES training and increased 0.6 fold in the triceps after ACE training. PGC-1α increased by 2.3 fold in the VL after FES training and 3.8 fold in the triceps after ACE training. AMPK increased by 3.4 fold in the VL after FES training and in the triceps after ACE training.>Conclusion: FES-LEC and ACE training were associated with greater protein expressions in the trained muscles by effectively influencing the abundance of GLUT-4, AMPK and PGC-1α. Thus, FES-LEC training of paralyzed muscle can modulate protein expression similar to that of trained and innervated muscle.
机译:>研究设计:纵向设计。>目标:该研究确定了两种形式的运动训练对两种蛋白质的丰度的影响(葡萄糖转运蛋白4 [GLUT-4] ,参与葡萄糖利用的单磷酸腺苷激酶(AMPK)和调节能量代谢和线粒体生物合成相关基因的转录共激活因子(过氧化物酶体增殖物激活受体(PPAR)共激活因子1 alpha [PGC-1α])。患有慢性运动完全性脊髓损伤(SCI)的患者。>设置:在医疗中心进行的临床试验。>方法:九名患有慢性运动完全性脊髓损伤的男性参加了功能性电刺激下肢骑行(FES-LEC; n = 4)或手臂骑行测功计(arm-cycling ergometer [ACE]; n = 5)每周5天,共16周。通过双能X射线吸收法测量全身成分。进行静脉葡萄糖耐量试验以测量葡萄糖有效性(Sg)和胰岛素敏感性(Si)。运动训练干预前后1周收集右侧外侧股肌(VL)和肱三头肌的肌肉活检。>结果:训练干预均未改变人体成分或碳水化合物代谢。 FES训练后,GLUT-4在VL中增加3.8倍,而ACE训练后在三头肌中增加0.6倍。 FES训练后,PGL-1α在VL中增加2.3倍,而ACE训练后在三头肌中增加3.8倍。 FES训练后和ACE训练后的三头肌中AMPK升高3.4倍。>结论:FES-LEC和ACE训练通过有效地影响肌肉的丰度而与受训练的肌肉中更高的蛋白质表达相关。 GLUT-4,AMPK和PGC-1α。因此,FES-LEC训练瘫痪的肌肉可以调节蛋白质表达,类似于训练和神经支配的肌肉。

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