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The effect of quinidine on membrane electrical activity in frog auricular fibres studied by current and voltage clamp.

机译:通过电流和电压钳研究奎尼丁对蛙耳纤维膜电活性的影响。

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摘要

1 The action of quinidine sulphate 50 muM has been investigated on frog auricular trabeculae transmembrane currents recorded with a double sucrose gap apparatus. Results were obtained either in current or in voltage clamp conditions. 2 Quinidine modified the time course of repetitive activity elicited by long lasting depolarizing currents and reduced the range of current over which repetitive activity could be triggered, eventually abolishing repetitive responses altogether. 3 Several authors have emphasized the limitations of the voltage clamp method. Taking into account these limitations, the numerical values of the parameters obtained in the present work must not be considered as exact values but may be interpreted as indicators of the variations of the parameters. 4 The results are in agreement with previous findings that the main features of the action of quinidine are to produce (a) a reduced maximum rate of depolarization (MRD), (b) a reduced total amplitude of action potential, (c) a flattening of the plateau of the action potential, (d) a slight prolongation of the tail of the action potential, (e) an increased effective refractory period without greatly prolonging action potential duration, (f) no change of resting potential and of 50% repolarization time. 5 The analysis of ionic conductances has provided explanations for the above effects. 6 Quinidine reduced the reactivation kinetics of the sodium inward current, and decreased sodium conductance and the steady state of activation. These effects account for (a) and (b). 7 Quinidine increased the activation and inactivation time constants of sodium conductances, which account in part for (e). 8 Quinidine delayed reactivation of slow inward current, reduced calcium conductance, and decreased the steady state of activation of calcium conductance. These effects could account for (c). 9 The amplitudes of the two components of the delayed conductances responsible for repolarization were decreased by quinidine, and the time constant of activation for the faster of the two was slowed. These effects could account for (d) and in part for (e).
机译:1已用双蔗糖间隙仪记录了50 µM硫酸奎尼丁对青蛙耳小梁小跨膜电流的作用。在电流或电压钳制条件下获得结果。 2奎尼丁改变了持久去极化电流引起的重复活性的时间过程,并减小了可触发重复活性的电流范围,最终完全废除了重复反应。 3几位作者强调了电压钳位方法的局限性。考虑到这些限制,在本工作中获得的参数的数值不能认为是精确值,而可以解释为参数变化的指标。 4结果与以前的发现相符,奎尼丁的作用的主要特征是产生(a)降低的最大去极化率(MRD),(b)降低的总动作电位振幅,(c)平坦化(d)动作电位的尾部略微延长,(e)增加有效不应期,而又不大大延长动作电位的持续时间,(f)静息电位不变,复极50%时间。 5离子电导的分析为上述效应提供了解释。 6奎尼丁降低了钠内向电流的再活化动力学,并降低了钠电导和活化的稳态。这些影响解释了(a)和(b)。 7奎尼丁增加了钠电导的活化和失活时间常数,这部分解释了(e)。 8奎尼丁延迟了缓慢的内向电流的活化,降低了钙电导,并降低了钙电导活化的稳态。这些影响可以解释为(c)。 9奎尼丁降低了引起复极化的延迟电导的两个成分的振幅,而两者中较快的一个的激活时间常数减慢了。这些影响可以解释(d),部分可以解释(e)。

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    Ducouret, P;

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  • 年度 1976
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