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首页> 外文期刊>American Journal of Physiology >K+-induced twitch potentiation is not due to longer action potential.
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K+-induced twitch potentiation is not due to longer action potential.

机译:K +诱导的抽搐增强不是由于更长的动作电位。

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摘要

The objective of this study was to determine whether an increased duration of the action potential contributes to the K+-induced twitch potentiation at 37 degrees C. Twitch contractions were elicited by field stimulation, and action potentials were measured with conventional microelectrodes. For mouse extensor digitorum longus (EDL) muscle, twitch force was greater at 7-13 mM K+ than at 4.7 mM (control). For soleus muscle, twitch force potentiation was observed between 7 and 11 mM K+. Time to peak and half-relaxation time were not affected by the increase in extracellular K+ concentration in EDL muscle, whereas both parameters became significantly longer in soleus muscle. Decrease in overshoot and prolongation of the action potential duration observed at 9 and 11 mM K+ were mimicked when muscles were respectively exposed to 25 and 50 nM tetrodotoxin (TTX; used to partially block Na+ channels). Despite similar action potentials, twitch force was not potentiated by TTX. It is therefore suggested that theK+-induced potentiation of the twitch in EDL muscle is not due to a prolongation of the action potential and contraction time, whereas a longer contraction, especially the relaxation phase, may contribute to the potentiation in soleus muscle.
机译:这项研究的目的是确定增加的动作电位持续时间是否有助于在37摄氏度下K +诱导的抽搐增强。通过场刺激引起抽搐收缩,并使用常规微电极测量动作电位。对于小鼠趾长伸肌(EDL)肌肉,在7-13 mM K +处的抽搐力大于在4.7 mM处(对照)。对于比目鱼肌,在7至11 mM K +之间观察到了抽搐力增强。到达峰值的时间和半松弛时间不受EDL肌肉中细胞外K +浓度增加的影响,而比目鱼肌中这两个参数明显变长。当肌肉分别暴露于25和50 nM河豚毒素(TTX;用于部分阻断Na +通道)时,模拟了在9和11 mM K +处观察到的过冲减少和动作电位持续时间的延长。尽管动作电位类似,但TTX并未增强抽搐的力量。因此建议,EDL肌肉中K +诱导的抽搐的增强不是由于动作电位和收缩时间的延长,而较长的收缩(尤其是松弛期)可能有助于比目鱼肌的增强。

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