Spriet L L, Matsos C G, Peters S J, Heigenhauser G J, Jones N L
Am J Physiol. 1985 Mar;248(3 Pt 1):C337-47. doi: 10.1152/ajpcell.1985.248.3.C337.
The metabolism and performance of a perfused rat hindquarter preparation was examined during heavy exercise in three conditions: control (C), metabolic acidosis (MA, decreased bicarbonate concentration), and respiratory acidosis (RA, increased CO2 tension). A one-pass system was used to perfuse the hindquarters for 30 min at rest and 20 min during tetanic stimulation via the sciatic nerve. The isometric tension generated by the gastrocnemius-plantaris-soleus muscle group was recorded, and biopsies were taken pre- and postperfusion. Initial isometric tensions were similar in all conditions, but the rate of tension decay was largest in acidosis; the 5-min tensions for C, MA, and RA were 1,835 +/- 63, 1,534 +/- 63, and 1,434 +/- 73 g, respectively. O2 uptake in C was greater than in MA and RA (23.4 +/- 1.3 vs. 17.0 +/- 1.4 and 16.5 +/- 2.3 mumol X min-1), paralleling the tension findings. Hindquarter lactate release was greatest in C, least in MA, and intermediate in RA. Acidosis resulted in less muscle glycogen utilization and lactate accumulation than during control. Muscle creatine phosphate utilization and ATP levels were unaffected by acidosis. Acidosis decreased the muscle's ability to generate isometric tension and depressed both aerobic and anaerobic metabolism. During stimulation in this model lactate left the muscle mainly as a function of the production rate, although a low plasma bicarbonate concentration at pH 7.15 depressed muscle lactate release.
在三种情况下,对灌注大鼠后肢标本在剧烈运动期间的代谢和性能进行了检查:对照(C)、代谢性酸中毒(MA,碳酸氢盐浓度降低)和呼吸性酸中毒(RA,二氧化碳分压升高)。采用单通道系统在静息状态下灌注后肢30分钟,并在通过坐骨神经进行强直刺激期间灌注20分钟。记录腓肠肌-比目鱼肌-跖肌肌群产生的等长张力,并在灌注前后进行活检。所有情况下初始等长张力相似,但酸中毒时张力衰减速率最大;C组、MA组和RA组的5分钟张力分别为1835±63、1534±63和1434±73克。C组的氧气摄取量大于MA组和RA组(23.4±1.3对17.0±1.4和16.5±2.3μmol·min-1),与张力结果平行。后肢乳酸释放量在C组最大,在MA组最小,在RA组居中。酸中毒导致肌肉糖原利用和乳酸积累比对照时少。肌肉磷酸肌酸利用和ATP水平不受酸中毒影响。酸中毒降低了肌肉产生等长张力的能力,并抑制了有氧和无氧代谢。在该模型的刺激过程中,乳酸离开肌肉主要取决于产生速率,尽管在pH 7.15时低血浆碳酸氢盐浓度会抑制肌肉乳酸释放。