The effects of reduced Na+/K+ gradients and N'/> Relations between excitability and contractility in rat soleus muscle: role of the Na+-K+ pump and Na+/K+ gradients
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Relations between excitability and contractility in rat soleus muscle: role of the Na+-K+ pump and Na+/K+ gradients

机译:大鼠比目鱼肌兴奋性与收缩性之间的关系:Na + -K +泵和Na + / K +梯度的作用

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摘要

class="enumerated" style="list-style-type:decimal">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.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 β2-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.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.These results show a close correlation between excitability and tetanic force. Furthermore, in muscles depressed by a reduction in the Na+/K+ gradients, β-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.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> Na + / K + 梯度降低和Na + -K + 泵刺激对复合动作电位的影响(M波)和收缩力在通过神经刺激的离体比目鱼肌中进行了检查。 使肌肉暴露于含有85 mM Na + 和9 mM K 的缓冲液中与对照组相比,+ (85 Na + / 9 K + 缓冲液)产生的M波面积减少了54%,强直作用力减少了50%在含有147 mM Na + 和4 mM K + 的标准缓冲液中。随后使用β2-肾上腺素受体激动剂沙丁胺醇刺激活性Na + -K + 转运,引起M波面积和强直力明显恢复(分别达到98%和87%分别为控制级别)。同样,用胰岛素刺激Na + -K + 转运蛋白也能显着恢复M波面积和强直作用力。 在与85平衡时Na + / 9 K + 缓冲液,加入沙丁胺醇后,M波面积与强直作用力之间存在紧密的线性关系(r = 0·92,P <0· 001)。在使用河豚毒素降低兴奋性的肌肉中以及在频率为30 Hz的连续刺激120 s疲劳的肌肉中也发现了相似的相关性。 这些结果表明,兴奋性与强直性力量之间有着密切的相关性。此外,在Na + / K + 梯度降低而压抑的肌肉中,Na + -K + 泵引起兴奋性恢复,这可以完全解释先前证明的Na + -K + 泵刺激后的强直性恢复。此外,数据表明,兴奋性丧失是高频(30 Hz)刺激引起的疲劳的重要因素。

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