首页> 美国卫生研究院文献>The Journal of Physiology >Transient inward current in guinea-pig atrial myocytes reflects a change of sodium-calcium exchange current.
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Transient inward current in guinea-pig atrial myocytes reflects a change of sodium-calcium exchange current.

机译:豚鼠心房肌细胞中的瞬时内向电流反映了钠钙交换电流的变化。

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摘要

1. Enzymatically isolated, cultured myocytes from hearts of adult guinea-pigs were voltage clamped with a whole-cell patch-clamp technique. The pipette-filling solution for internal dialysis contained 65 mM-citrate and 50 microM-EGTA as Ca2+-chelating agents and 20 mM-Na+. Potassium channel currents were blocked by replacing this ion on both sides of the membrane by Cs+. 2. In the above conditions myocytes develop spontaneous transient inward currents (Iti) at constant negative membrane holding potentials. At a given membrane potential Iti can be recorded with constant amplitude and frequency for periods of up to ca. 40 min. A membrane current with similar properties can be evoked by superfusion of the cell with caffeine-containing (5-10 mM) solution. 3. Depolarization results in a reduction of Iti amplitude and a prolongation of its duration. After a step change of the membrane potential to ca. -10 mV or a less-negative level only one inward current change is observed. Thereafter the membrane current remains inward with regard to the instantaneous current at this membrane potential. Complete relaxation of Iti then is only observed after repolarization to a more-negative membrane potential. 4. The current change caused by sarcoplasmic Ca2+ release is inward in a range of membrane potentials between -90 and +75 mV. A reversal of Iti was never detected. 5. Both the instantaneous current-voltage (I-V) relation and voltage dependence of peak Iti display distinct outward rectification. Both I-V relations can be described by a formalism suggested for a membrane current caused by electrogenic Na+-Ca2+ exchange (INa, Ca) assuming a 3:1 stoichiometry and a single energy barrier in the electric field of the membrane. 6. An increase of the time integral of Iti at the holding potential is observed after depolarizations to positive membrane potentials, where the outward-rectifying current component is prominent. This supports the view that the outward current represents INa, Ca in the 'reverse mode', carrying Ca2+ ions into the cell. 7. After prolonged cell dialysis a run-down of Iti is observed. Since strong depolarizations in this condition still can cause inward currents upon repolarization, run-down is likely to reflect an impairment of sarcoplasmic reticulum function rather than an effect of cell dialysis on the exchanger. 8. We conclude that under the present conditions a membrane current is measured, which to a large extent determines the 'passive' I-V curve of the myocytes. This current is modified by a rise in Ca2+(i) following sarcoplasmic Ca2+ release.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.用全细胞膜片钳技术将成年豚鼠心脏的酶分离培养的心肌细胞电压钳位。用于内部透析的移液器填充溶液包含65 mM柠檬酸盐和50 microM-EGTA作为Ca2 +螯合剂和20 mM-Na +。通过用Cs +代替膜两侧的离子来阻断钾离子通道的电流。 2.在上述条件下,心肌细胞在恒定的负膜保持电位下产生自发的瞬时内向电流(Iti)。在给定的膜电位下,可以以恒定的幅度和频率记录Iti的时间,最长可达ca。 40分钟通过将细胞与含咖啡因的溶液(5-10 mM)融合,可以诱发出具有类似特性的膜电流。 3.去极化导致Iti振幅减小和持续时间延长。经过一步的改变膜电位至约。 -10 mV或较小的负电平,仅观察到一个向内电流变化。此后,在该膜电位下,膜电流相对于瞬时电流保持向内。然后只有在重新极化至更负的膜电位后才能观察到Iti完全松弛。 4.由肌浆Ca2 +释放引起的电流变化在-90至+75 mV的膜电位范围内向内。从未发现Iti逆转。 5.峰值Iti的瞬时电流-电压(I-V)关系和电压相关性均显示出明显的向外整流。两种I-V关系都可以通过形式化描述,该形式化建议由电致Na + -Ca2 +交换(INa,Ca)引起的膜电流,假设化学计量比为3:1,并且在膜电场中具有单个能垒。 6.在去极化为正膜电位后,观察到Iti在保持电位的时间积分增加,其中向外整流电流分量很明显。这支持了以下观点:向外的电流代表“反向模式”中的Ca,+,将Ca2 +离子带入细胞。 7.长时间的细胞透析后,观察到Iti减少。由于在这种情况下强烈的去极化仍会在重新极化时引起流入的电流,因此损耗很可能反映了肌浆网功能的损害,而不是细胞对交换器的透析作用。 8.我们得出结论,在当前条件下,可以测量膜电流,这在很大程度上决定了肌细胞的“被动” IV曲线。肌浆中Ca2 +释放后,Ca2 +(i)的升高会改变此电流。(抽象截断为400字)

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