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铷离子和膜电位对绵羊浦肯野纤维细胞内钠活性的影响。

The effects of rubidium ions and membrane potentials on the intracellular sodium activity of sheep Purkinje fibres.

作者信息

Eisner D A, Lederer W J, Vaughan-Jones R D

出版信息

J Physiol. 1981 Aug;317:189-205. doi: 10.1113/jphysiol.1981.sp013820.

Abstract
  1. Intracellular Na activity, aiNa, was measured in voltage-clamped sheep cardiac Purkinke fibres. 2. Increasing [Rb]0 from 0 to 4 mM in K-free solutions (at a fixed membrane potential) decreased aiNa. Further increases of [Rb]0 (up to 20 mM) had little or no effect. 3. Following exposure to Rb-free, K-free solution, the addition of a test concentration of Rb produced an exponential decrease of aiNa. The rate constant of decay of aiNa increased with increasing [Rb]0 over the measured range (0-20 mM). 4. The accompanying electrogenic Na pump current transient decayed with the same rate constant as aiNa over the range of [Rb]0 examined. During this decay the electrogenic Na pump current was a linear function of aiNa. Increasing [Rb]0 increased the steepness of the dependence of the electrogenic current on aiNa. 5. A constant fraction of the net Na efflux was electrogenic. This fraction was not affected by varying [Rb]0 over the range 0-20 mM. 6. Using a simple model, it is shown that the dependence of steady-state aiNa on [Rb]0 is half-saturated by less than 1 mM-[Rb]0. The rate constant of decay of aiNa and the slope of the relationship between electrogenic Na pump current and aiNa are, however, better fitted with a lower affinity for Rb (K0.5 = 4 mM-[Rb]0). 7. Depolarizing the membrane potential with the voltage clamp decreased aiNa; hyperpolarization increased it. These effects persisted in the presence of 10(-5) M-strophanthidin. An effect of membrane potential on the net passive Na influx can account for the observations. 8. The effects of membrane potential on the net passive Na influx were examined by measuring the maximum rate of rise of aiNa at different holding potentials after inhibiting the Na-K pump in a K-free, Rb-free solution. Depolarization decreased the Na influx. 9. Using the constant field equation, the net passive Na influx was used to estimate the apparent Na permeability coefficient, PNa. This was between 0.8 x 10(-8) and 1.5 x 10(-8) cm sec-1.
摘要
  1. 在电压钳制的绵羊心脏浦肯野纤维中测量细胞内钠活性(aiNa)。2. 在无钾溶液中(固定膜电位)将[Rb]0从0增加到4 mM会降低aiNa。[Rb]0进一步增加(高达20 mM)几乎没有影响或没有影响。3. 暴露于无Rb、无钾溶液后,加入测试浓度的Rb会使aiNa呈指数下降。在测量范围内(0 - 20 mM),aiNa的衰减速率常数随[Rb]0增加而增加。4. 在检查的[Rb]0范围内,伴随的生电钠泵电流瞬变以与aiNa相同的速率常数衰减。在这种衰减过程中,生电钠泵电流是aiNa的线性函数。增加[Rb]0会增加生电电流对aiNa的依赖陡度。5. 净钠外流的恒定比例是生电的。该比例在0 - 20 mM范围内不受[Rb]0变化的影响。6. 使用一个简单模型表明,稳态aiNa对[Rb]0的依赖性在小于1 mM - [Rb]0时达到半饱和。然而,aiNa的衰减速率常数以及生电钠泵电流与aiNa之间关系的斜率,用对Rb较低的亲和力(K0.5 = 4 mM - [Rb]0)拟合得更好。7. 用电压钳使膜电位去极化会降低aiNa;超极化会增加aiNa。在存在10(-5) M毒毛花苷的情况下这些效应持续存在。膜电位对净被动钠内流的影响可以解释这些观察结果。8. 通过在无钾、无Rb溶液中抑制钠钾泵后,在不同钳制电位下测量aiNa的最大上升速率,研究了膜电位对净被动钠内流的影响。去极化会减少钠内流。9. 使用恒定场方程,净被动钠内流用于估计表观钠渗透系数PNa。其值在0.8×10(-8)至1.5×10(-8) cm sec-1之间。

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