The effects of reduced Na+/K+ gradients and Na+-K+ pump stimulation on compound action potentials (M waves) and contractile force were examined in isolated rat soleus muscles stimulated through the nerve. 2. Exposure of muscles to buffer containing 85 mM Na+ and 9 mM K+ (85 Na+/9 K+ buffer) produced a 54% decrease in M wave area and a 50 % decrease in tetanic force compared with control levels in standard buffer containing 147 mM Na+ and 4 mM K+. Subsequent stimulation of active Na+-K+ transport, using the beta2-adrenoceptor agonist salbutamol, induced a marked recovery of M wave area and tetanic force (to 98 and 87% of the control level, respectively). Similarly, stimulation of active Na+-K+ transport with insulin induced a significant recovery of M wave area and tetanic force. 3. During equilibration with 85 Na+/9 K+ buffer and after addition of salbutamol there was a close linear correlation between M wave area and tetanic force (r = 0.92, P < 0.001). Similar correlations were found in muscles where tetrodotoxin was used to reduce excitability and in muscles fatigued by 120 s of continuous stimulation at a frequency of 30 Hz. 4. These results show a close correlation between excitability and tetanic force. Furthermore, in muscles depressed by a reduction in the Na+/K+ gradients, beta-adrenergic stimulation of the Na+-K+ pump induces a recovery of excitability which can fully explain the previously demonstrated recovery of tetanic force following Na+-K+ pump stimulation. Moreover, the data indicate that loss of excitability is an important factor in fatigue induced by high-frequency (30 Hz) stimulation.
摘要
在通过神经刺激的离体大鼠比目鱼肌中,研究了降低的Na⁺/K⁺梯度和Na⁺-K⁺泵刺激对复合动作电位(M波)和收缩力的影响。2. 与含有147 mM Na⁺和4 mM K⁺的标准缓冲液中的对照水平相比,将肌肉暴露于含有85 mM Na⁺和9 mM K⁺的缓冲液(85 Na⁺/9 K⁺缓冲液)中,M波面积减少54%,强直收缩力减少50%。随后,使用β2-肾上腺素能受体激动剂沙丁胺醇刺激活性Na⁺-K⁺转运,导致M波面积和强直收缩力显著恢复(分别恢复至对照水平的98%和87%)。同样,用胰岛素刺激活性Na⁺-K⁺转运也导致M波面积和强直收缩力显著恢复。3. 在与85 Na⁺/9 K⁺缓冲液平衡期间以及加入沙丁胺醇后,M波面积和强直收缩力之间存在密切的线性相关性(r = 0.92,P < 0.001)。在使用河豚毒素降低兴奋性的肌肉以及通过30 Hz频率连续刺激120 s而疲劳的肌肉中也发现了类似的相关性。4. 这些结果表明兴奋性和强直收缩力之间存在密切相关性。此外,在因Na⁺/K⁺梯度降低而受到抑制的肌肉中,β-肾上腺素能刺激Na⁺-K⁺泵可诱导兴奋性恢复,这可以充分解释先前证明的Na⁺-K⁺泵刺激后强直收缩力的恢复。此外,数据表明兴奋性丧失是高频(30 Hz)刺激诱导疲劳的一个重要因素。