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大鼠比目鱼肌细胞外[K⁺]、膜电位与收缩之间的关系:钠钾泵的调节作用

Relation between extracellular [K+], membrane potential and contraction in rat soleus muscle: modulation by the Na+-K+ pump.

作者信息

Cairns S P, Flatman J A, Clausen T

机构信息

Institute of Physiology, University of Aarhus, DK-8000 Arhus-C, Denmark.

出版信息

Pflugers Arch. 1995 Oct;430(6):909-15. doi: 10.1007/BF01837404.

Abstract

An increased extracellular K+ concentration ([K+]0) is thought to cause muscle fatigue. We studied the effects of increasing [K+]0 from 4mM to 8-14mM on tetanic contractions in isolated bundles of fibres and whole soleus muscles from the rat. Whereas there was little depression of force at a [K+]0 of 8-9mM, a further small increase in [K+]0 to 11-14mM resulted in a large reduction of force. Tetanus depression at 11mM [K+]0 was increased when using weaker stimulation pulses and decreased with stronger pulses. Whereas the tetanic force/resting membrane potential (EM) relation showed only moderate force depression with depolarization from -74 to -62mV, a large reduction of force occurred when EM fell to-53mV. The implications of these relations to fatigue are discussed. Partial inhibition of the Na+-K+ pump with ouabain (10(-6 )M) caused additional force loss at 11mM [K+]0. Salbutamol, insulin, or calcitonin gene-related peptide all stimulated the Na+-K+ pump in muscles exposed to 11mM [K+]0 and induced an average 26-33% recovery of tetanic force. When using stimulation pulses of 0.1ms, instead of the standard 1.0-ms pulses, force recovery with these agents was 41-44% which was significantly greater (P < 0.025). Only salbutamol caused any recovery of EM (1.3mV). The observations suggest that the increased Na+ concentration difference across the sarcolemma, following Na+-K+ pump stimulation, has an important role in restoring excitability and force.

摘要

细胞外钾离子浓度([K⁺]₀)升高被认为会导致肌肉疲劳。我们研究了将[K⁺]₀从4mM增加到8 - 14mM对大鼠离体纤维束和完整比目鱼肌强直收缩的影响。在[K⁺]₀为8 - 9mM时,力量几乎没有下降,而[K⁺]₀进一步小幅增加到11 - 14mM时,力量大幅下降。当使用较弱的刺激脉冲时,1mM [K⁺]₀时的强直抑制增加,而使用较强脉冲时则减少。强直力量/静息膜电位(EM)关系显示,从 - 74mV去极化到 - 62mV时,力量仅适度下降,而当EM降至 - 53mV时,力量大幅下降。讨论了这些关系对疲劳的影响。用哇巴因(10⁻⁶M)部分抑制钠钾泵会在11mM [K⁺]₀时导致额外的力量损失。沙丁胺醇、胰岛素或降钙素基因相关肽均能刺激暴露于11mM [K⁺]₀的肌肉中的钠钾泵,并使强直力量平均恢复26 - 33%。当使用0.1ms而非标准的1.0ms刺激脉冲时,这些药物的力量恢复为41 - 44%,显著更高(P < 0.025)。只有沙丁胺醇能使EM恢复(1.3mV)。这些观察结果表明,钠钾泵受刺激后,肌膜两侧钠离子浓度差增加,在恢复兴奋性和力量方面具有重要作用。

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