Marsh D R, Campbell C B, Spriet L L
School of Human Biology, University of Guelph, Ontario, Canada.
J Appl Physiol (1985). 1992 Apr;72(4):1304-10. doi: 10.1152/jappl.1992.72.4.1304.
Female Sprague-Dawley rats (250 g) were hindlimb suspended for 14 days, and the effects of hindlimb unweighting (HU) on skeletal muscle anaerobic metabolism were investigated and compared with nonsuspended controls (C). Soleus (SOL), plantaris (PL), and red and white portions of the gastrocnemius (RG, WG) were sampled from resting and stimulated limbs. Muscle atrophy after HU was 46% in SOL, 22% in PL, and 24% in the gastrocnemius compared with nonsuspended C animals. The muscles innervated by the sciatic nerve were stimulated to contract with an occluded circulation for 60 s with trains of supramaximal impulses (100 ms, 80 Hz) at a train rate of 1.0 Hz. Peak tension development by the gastrocnemius-PL-SOL muscle group was similar in HU and C animals (13.0 +/- 1.2, 12.2 +/- 0.8 N/g wet muscle). Occlusion of the circulation before stimulation created a predominantly anaerobic environment, and in situ glycogenolysis and glycolysis were estimated from accumulations of glycolytic intermediates. Total glycogenolysis and glycolysis were higher in the RG muscle of HU animals (74.6 +/- 3.3, 58.1 +/- 1.1) relative to C (57.1 +/- 4.6, 46.1 +/- 2.9 mumol glucosyl units/g dry muscle). Consequently, total anaerobic ATP production was also increased (HU, 251.3 +/- 1.1; C, 204.6 +/- 8.9 mumol ATP/g dry muscle). Total ATP production, glycogenolysis, and glycolysis were unaffected by HU in SOL, PL, and WG muscles. The enhanced glycolytic activity in RG after HU may be attributed to a shift in the metabolic profile from oxidative to glycolytic in the fast oxidative-glycolytic fiber population.
将250克雌性斯普拉格-道利大鼠后肢悬吊14天,研究后肢去负荷(HU)对骨骼肌无氧代谢的影响,并与未悬吊的对照组(C)进行比较。从静止和受刺激的肢体中采集比目鱼肌(SOL)、跖肌(PL)以及腓肠肌的红色和白色部分(RG、WG)。与未悬吊的C组动物相比,HU后肌肉萎缩情况为:SOL中萎缩46%,PL中萎缩22%,腓肠肌中萎缩24%。用坐骨神经支配的肌肉,以1.0赫兹的串刺激频率,给予一系列超强脉冲(100毫秒,80赫兹)刺激收缩60秒,同时阻断血液循环。HU组和C组动物的腓肠肌-PL-SOL肌肉群的峰值张力发展相似(13.0±1.2,12.2±0.8牛/克湿肌肉)。刺激前阻断血液循环会营造出主要为无氧的环境,通过糖酵解中间产物的积累来估算原位糖原分解和糖酵解。相对于C组(57.1±4.6,46.1±2.9微摩尔葡萄糖基单位/克干肌肉),HU组动物的RG肌肉中总糖原分解和糖酵解更高(74.6±3.3,58.1±1.1)。因此,总无氧ATP生成也增加了(HU组,251.3±1.1;C组,204.6±8.9微摩尔ATP/克干肌肉)。HU对SOL、PL和WG肌肉中的总ATP生成、糖原分解和糖酵解没有影响。HU后RG中糖酵解活性增强可能归因于快速氧化-糖酵解纤维群体的代谢模式从氧化型向糖酵解型转变。