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Background current in sino-atrial node cells of the rabbit heart.

机译:兔心脏窦房结细胞的背景电流。

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摘要

1. The Ca2+ current, K+ current, hyperpolarization-activated current, Na(+)-K+ pump current and the Na(+)-Ca2+ exchange current were all blocked by appropriate blockers and the remaining time-independent currents were investigated in single pacemaker cells of the rabbit sino-atrial node using the whole-cell patch clamp technique. 2. Exchanging the bathing solution from Tris-hydroxymethyl-aminomethane hydrochloride (Tris) Na+ free to 150 mM-Na+ induced an inward current and the slope conductance of the current-voltage relationship increased from 0.45 +/- 0.18 to 0.87 +/- 0.33 nS (n = 71) at -50 mV. The remaining conductance in Tris Na(+)-free solution was essentially the same when Tris was substituted with tetraethylammonium (TEA) or N-methyl-D-glucamine (NMG). The current density of the Na(+)-dependent inward current obtained by subtracting the current in Tris Na(+)-free from that in 150 mM-Na+ solution was 0.73 +/- 0.21 pA/pF (n = 71) at -50 mV. We called this current the Na(+)-dependent background current. 3. The membrane conductance was reduced by lowering the temperature of the external solution from 36 to 23 degrees C. In Tris Na(+)-free solution, the temperature-sensitive component was outward at all potentials, whereas it showed a reversal potential at around -20 mV in 150 mM-Na+ solution. This reversal potential was interpreted as a sum of the Cs+ efflux and Na+ influx, by comparing the Na(+)-dependent inward currents obtained at 36 degrees C and those at 23 degrees C. 4. Divalent cations (2 mM-Ni2+, 1 mM-Ba2+ or 2 mM-Ca2+) reduced only the outward current in the Tris Na(+)-free solution, while in the 150 mM-Na+ solution, they reduced both the inward and outward components of the current which had a reversal potential of around -10 mV. 5. Amiloride depressed the membrane conductance in 150 mM-Na+, Cs+ or Rb+ external solution, though only at negative membrane potentials, which suggests amiloride has a voltage-dependent effect on the background current. 6. Removal of Cl- from the external solution or the addition of a Cl- channel blocker (4,4'-dinitrostilbene-2,2'-disulphonic acid disodium salt, DNDS) failed to affect the membrane conductance. 7. When the monovalent cation-dependent inward current was measured by subtracting the current in the Tris solution from those recorded in the various monovalent cation solutions, the current amplitude decreased in the order: Rb+ greater than K+ greater than Cs+ greater than Na+ greater than Li+, which suggests a poor cation selectivity of this current system.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1. Ca2 +电流,K +电流,超极化激活电流,Na(+)-K +泵浦电流和Na(+)-Ca2 +交换电流均被适当的阻滞剂阻滞,并在单个起搏器中研究了其余的时间无关电流使用全细胞膜片钳技术的兔窦房结细胞。 2.将沐浴液从游离的Tris-羟甲基-氨基甲烷盐酸盐(Tris)交换为150 mM-Na +诱导了内向电流,电流-电压关系的斜率电导从0.45 +/- 0.18增大到0.87 +/- 0.33 -50 mV时的nS(n = 71)。当Tris被四乙铵(TEA)或N-甲基-D-葡糖胺(NMG)取代时,无Tris Na(+)溶液中的剩余电导基本上相同。通过在150 mM-Na +溶液中减去无Tris Na(+)的电流而获得的Na(+)依赖性内向电流的电流密度在-时为0.73 +/- 0.21 pA / pF(n = 71)。 50毫伏。我们将此电流称为依赖Na(+)的背景电流。 3.通过将外部溶液的温度从36摄氏度降低到23摄氏度,降低了膜电导。在不含Tris Na(+)的溶液中,温度敏感组件在所有电势下均朝外,而在50°C时表现出反向电势在150 mM-Na +溶液中约-20 mV。通过比较在36摄氏度和23摄氏度下获得的Na(+)依赖性内向电流,可将这种逆转电位解释为Cs +外排和Na +内流的总和。4.二价阳离子(2 mM-Ni2 +,1 mM-Ba2 +或2 mM-Ca2 +)仅减少了无Tris Na(+)溶液中的向外电流,而在150 mM-Na +溶液中,它们减少了具有反向电位的电流的内向和外向分量约为-10 mV。 5.尽管仅在负膜电位下,阿米洛利降低了150 mM-Na +,Cs +或Rb +外部溶液中的膜电导,这表明阿米洛利对背景电流具有电压依赖性。 6.从外部溶液中除去Cl-或添加Cl-通道阻滞剂(4,4'-二硝基二苯乙烯-2,2'-二磺酸二钠盐,DNDS)均不会影响膜电导。 7.当通过从各种单价阳离子溶液中记录的电流中减去Tris溶液中的电流来测量单价阳离子依赖性的内向电流时,电流幅度按以下顺序减小:Rb +大于K +大于Cs +大于Na +大于Li +,表明该系统的阳离子选择性差。(摘要截短为400字)

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