Renaud J M, Gramolini A, Light P, Comtois A
Department of Physiology, University of Ottawa, Ontario, Canada.
Acta Physiol Scand. 1996 Mar;156(3):203-12. doi: 10.1046/j.1365-201X.1996.210000.x.
The activity of ATP-sensitive potassium channels of skeletal muscle is controlled by changes in the bioenergetic state of the cell. These channels are inactive in unfatigued muscle and become activated during fatigue. It has been postulated that ATP-sensitive potassium channels shorten the action potential duration, increase the potassium efflux and contribute to the decrease in force during fatigue. Although blocking ATP-sensitive potassium channels during fatigue prolongs the action potential duration and decreases the potassium efflux as expected, it does not affect the rate of fatigue development as observed from the decrease in tetanic force. Even though such results are not consistent with the hypothesis that ATP-sensitive potassium channels contribute to the decrease in force during fatigue, a reduced capacity of skeletal muscles to recover their tetanic force following fatigue is also observed when ATP-sensitive potassium channels are blocked during fatigue, suggesting that these channels have a myoprotective effect. It is thus possible that removing this myoprotection during fatigue results in deleterious effects which counteract the expected slower decrease in force. However ATP-sensitive potassium channel openers also fall to affect the rate of fatigue development. Therefore, the results obtained so far do not support the hypothesis that ATP-sensitive potassium channels contribute to the decrease in force during fatigue.
骨骼肌中ATP敏感性钾通道的活性受细胞生物能状态变化的控制。这些通道在未疲劳的肌肉中无活性,而在疲劳过程中被激活。据推测,ATP敏感性钾通道可缩短动作电位持续时间,增加钾外流,并在疲劳时促使力量下降。尽管在疲劳期间阻断ATP敏感性钾通道会如预期那样延长动作电位持续时间并减少钾外流,但从强直收缩力的下降情况来看,它并不影响疲劳发展的速率。即使这些结果与ATP敏感性钾通道在疲劳时促使力量下降的假说不一致,但当在疲劳期间阻断ATP敏感性钾通道时,也会观察到骨骼肌在疲劳后恢复强直收缩力的能力降低,这表明这些通道具有肌肉保护作用。因此,在疲劳期间去除这种肌肉保护作用可能会产生有害影响,抵消预期的力量下降减缓。然而,ATP敏感性钾通道开放剂也未能影响疲劳发展的速率。所以,目前获得的结果并不支持ATP敏感性钾通道在疲劳时促使力量下降的假说。