首页> 美国卫生研究院文献>The Journal of Physiology >Effects of rapid changes of external Na+ concentration at different moments during the action potential in guinea-pig myocytes.
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Effects of rapid changes of external Na+ concentration at different moments during the action potential in guinea-pig myocytes.

机译:豚鼠心肌细胞动作电位期间不同时刻外部Na +浓度快速变化的影响。

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摘要

1. A rapid solution-changing system using a solenoid was set up. The half-time for changing the external solution surrounding a ventricular cardiac cell was 7.2 +/- 1.4 ms, whereas the time needed to change 90% of this solution was 48.5 +/- 7.9 ms. This rapid switching system was used to reduce the external sodium concentration at different moments during the action potential (recorded using the whole-cell method) to 50% of its original value. This was performed in order to investigate the effect on the shape and duration of the action potential of modifying the activity of the sodium-calcium exchanger. 2. A diminution of the action potential duration was seen irrespective of the substitute used for reducing the NaCl concentration from 140 to 70 mM. The magnitude of this diminution depended on the presence or absence of EGTA (5 mM) in the pipette solution and also on the moment during the action potential at which the NaCl substitution occurred. 3. Some differences were observed depending on whether the NaCl substitute used was lithium chloride or choline chloride. When choline chloride or N-methyl-D-glucamine was used as the NaCl substitute, the amplitude of the action potential was slightly reduced (by 2-5 mV) when the solution was changed 40 ms before the action potential was triggered. This reduction was never observed when LiCl was used as the NaCl substitute. 4. The effects on the shape of the action potential of changing from a solution containing 140 mM NaCl to one containing 70 mM NaCl and 70 mM LiCl were much more rapid when these changes occurred at a later stage during the action potential. The rate of repolarization was more than doubled when the change occurred at a late stage of the action potential but was hardly changed at the beginning of the plateau. 5. These experiments confirm the role of the sodium-calcium exchange current in determining the duration of the mammalian ventricular action potential. However, it is also possible that the sodium background current plays a significant role in determining the shape of the action potential.
机译:1.建立了一个使用螺线管的快速溶液更换系统。更换心室心脏细胞周围外部溶液的半时间为7.2 +/- 1.4毫秒,而更换90%的这种溶液所需的时间为48.5 +/- 7.9毫秒。该快速切换系统用于将动作电位(使用全细胞方法记录)期间在不同时刻的外部钠浓度降低至其原始值的50%。进行此操作是为了研究改变钠钙交换剂活性对动作电位的形状和持续时间的影响。 2.观察到动作电位持续时间减小,而与用于将NaCl浓度从140 mM降低至70 mM的替代物无关。这种减少的程度取决于移液器中是否存在EGTA(5 mM),还取决于发生NaCl取代的动作电位期间。 3.根据所用的NaCl替代品是氯化锂还是氯化胆碱,观察到一些差异。当使用氯化胆碱或N-甲基-D-葡糖胺作为NaCl替代物时,在触发动作电位之前40毫秒改变溶液时,动作电位的幅度会稍微降低(降低2-5 mV)。当LiCl用作NaCl替代品时,从未观察到这种减少。 4.当这些变化在动作电位的后期发生时,从含有140 mM NaCl的溶液变为含有70 mM NaCl和70 mM LiCl的溶液对动作电位的形状的影响要快得多。当在动作电位的后期发生变化时,复极化率增加了一倍以上,但在高原开始时几乎没有变化。 5.这些实验证实了钠钙交换电流在确定哺乳动物心室动作电位持续时间中的作用。但是,钠背景电流也可能在确定动作电位的形状中起重要作用。

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