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丙吡胺内外应用对鱿鱼巨轴突离子电流的影响。

The effects of external and internal application of disopyramide on the ionic currents of the squid giant axon.

作者信息

Elliott J R, Hendry B M

机构信息

Department of Physiology, University, Dundee.

出版信息

Br J Pharmacol. 1987 Sep;92(1):77-86. doi: 10.1111/j.1476-5381.1987.tb11298.x.

Abstract

1 The actions of the class I anti-arrythmic agent, disopyramide, on the ionic currents of the voltage-clamped squid axon have been investigated, by use of both extra-axonal and intra-axonal routes of application. 2 Extra-axonal application of 0.1 mM disopyramide produced no significant effects on the membrane currents. External disopyramide at 1.0 mM caused small, poorly reversible inhibition of both sodium and potassium currents. This block was use-dependent and was enhanced by use of test stimuli to more positive membrane potentials. 3 Intra-axonal application of 0.1 mM disopyramide caused a 40% reduction in the first-pulse sodium current (tonic block) and an additional use-dependent block. Analysis of first-pulse currents in terms of the Hodgkin-Huxley formalism indicated that the block resulted mainly from a reduction in the maximum available sodium conductance (gNa); there were no effects on the voltage dependence of the steady-state activation and inactivation parameters, m infinity and h infinity. 4 The use-dependent actions of disopyramide were investigated with a double voltage-clamp pulse protocol. The significant use-dependent effects of the drug were a further reduction in gNa and an increase in the time constant of inactivation (tau h). 5 Disopyramide appears to enter a blocking site in the sodium channel which is only readily accessible from the axoplasmic phase. Partition to the site depends on membrane voltage and on the state of the channel gates. Disopyramide binds at a significant rate to both open and inactivated forms of the sodium channel.

摘要
  1. 已通过轴突外和轴突内给药途径研究了Ⅰ类抗心律失常药双异丙吡胺对电压钳制的枪乌贼轴突离子电流的作用。2. 轴突外给予0.1 mM双异丙吡胺对膜电流无显著影响。1.0 mM的双异丙吡胺外用对钠电流和钾电流均产生轻微、可逆性差的抑制。这种阻断是使用依赖性的,且通过将测试刺激用于更正的膜电位而增强。3. 轴突内给予0.1 mM双异丙吡胺使第一个脉冲钠电流(强直阻断)降低40%,并产生额外的使用依赖性阻断。根据霍奇金-赫胥黎公式对第一个脉冲电流进行分析表明,阻断主要是由于最大可用钠电导(gNa)降低所致;对稳态激活和失活参数m∞和h∞的电压依赖性无影响。4. 用双电压钳脉冲方案研究了双异丙吡胺的使用依赖性作用。该药物显著的使用依赖性作用是gNa进一步降低以及失活时间常数(τh)增加。5. 双异丙吡胺似乎进入了钠通道中的一个阻断位点,该位点仅从轴浆相中易于接近。向该位点的分配取决于膜电压和通道门的状态。双异丙吡胺以显著的速率与钠通道的开放和失活形式结合。

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