Bruton J D, Lännergren J, Westerblad H
Department of Physiology and Pharmacology, Karolinska Institutet, 171 77 Stockholm, Sweden.
J Appl Physiol (1985). 1998 Aug;85(2):478-83. doi: 10.1152/jappl.1998.85.2.478.
The role of reduced muscle pH in the development of skeletal muscle fatigue is unclear. This study investigated the effects of lowering skeletal muscle intracellular pH by exposure to 30% CO2 on the number of isometric tetani needed to induce significant fatigue. Isolated single mouse muscle fibers were stimulated repetitively at intervals of 4-2.5 s by using 80-Hz, 400-ms tetani at 28 degrees C in Tyrode solution bubbled with either 5 or 30% CO2. Stimulation continued until tetanic force had fallen to 40% of the initial value. Exposure to 30% CO2 caused a significant fall in intracellular pH of approximately 0.3 pH unit but did not cause any significant changes in initial peak tetanic force. During the course of repetitive stimulation, intracellular pH fell by approximately 0.3 pH unit in both normal and acidified fibers. The number of tetani needed to reduce force to 40% of the initial value was not significantly different in 5 and 30% CO2 Tyrode. The sole effect of acidosis was to reduce the rate of relaxation of force, especially in fatigued fibers. It is concluded that, at 28 degrees C, acidosis per se does not accelerate the development of fatigue during repeated tetanic stimulation of isolated mouse skeletal muscle fibers.
骨骼肌pH值降低在骨骼肌疲劳发展过程中的作用尚不清楚。本研究通过将骨骼肌暴露于30%二氧化碳来降低细胞内pH值,以探究其对诱导显著疲劳所需的等长强直收缩次数的影响。在28℃下,于通有5%或30%二氧化碳的台氏液中,以80赫兹、400毫秒的强直刺激,每隔4 - 2.5秒对分离出的单根小鼠肌纤维进行重复刺激。刺激持续进行,直至强直收缩力降至初始值的40%。暴露于30%二氧化碳会导致细胞内pH值显著下降约0.3个pH单位,但初始强直收缩峰值力未出现任何显著变化。在重复刺激过程中,正常纤维和酸化纤维的细胞内pH值均下降约0.3个pH单位。在通有5%和30%二氧化碳的台氏液中,将收缩力降至初始值40%所需的强直收缩次数并无显著差异。酸中毒的唯一作用是降低力的松弛速率,尤其是在疲劳纤维中。研究得出结论,在28℃时,酸中毒本身并不会在对分离的小鼠骨骼肌纤维进行重复强直刺激期间加速疲劳的发展。