首页> 美国卫生研究院文献>The Journal of Physiology >Na(+)-Ca2+ exchange current in latent pacemaker cells isolated from cat right atrium.
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Na(+)-Ca2+ exchange current in latent pacemaker cells isolated from cat right atrium.

机译:从猫右心房分离出的潜在起搏器细胞中的Na(+)-Ca2 +交换电流。

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摘要

1. Single latent pacemaker cells were isolated from cat right atrium, and studied in a whole-cell configuration using a nystatin-perforated patch recording method. The nystatin method avoids alterations in intracellular Ca2+, cellular constituents and run-down of ionic currents. 2. Depolarizing voltage clamp pulses from -40 mV elicited L-type Ca2+ current (ICa) that exhibited an initial rapid phase of inactivation followed by a secondary slower inward current component that decayed over about 100 ms. The secondary inward component appeared as a slowly decaying inward tail current following short (10-40 ms) depolarizing clamp steps. 3. Slowly decaying inward currents were abolished by internally dialysing pacemaker cells with 2 mM EGTA using a ruptured patch recording method. Inward tail currents were also abolished by exposure to 1 microM ryanodine and significantly decreased by replacing 85% of external Na+ with lithium, without effect on peak ICa. These findings identify a Na(+)-Ca2+ exchange current (INa-Ca) that is mediated by sarcoplasmic reticulum (SR) Ca2+ release. 4. Properties of INa-Ca and ICa differed significantly: (i) ICa exhibited a bell-shaped voltage dependence that peaked at 0 mV and decreased at more positive voltages. INa-Ca was maximal at -10 mV and remained relatively constant at more positive voltages; (ii) a paired pulse protocol showed that the time course of INa-Ca recovery (5 s) was significantly longer than that of ICa (2 s); (iii) cadmium (50 microM) induced an inhibition of ICa that did not correlate in time with changes in INa-Ca. 5. The duration of depolarizing steps between 10 and 120 ms had no effect on the time course of INa-Ca tail currents. 6. Isoprenaline > or = 5 x 10(-8) M significantly increased peak ICa amplitude, peak INa-Ca amplitude, accelerated INa-Ca rate of decay and decreased the absolute time of INa-Ca decay. 7. Free-running pacemaker action potentials were clamped during diastole at either -40 or -70 mV (maximum diastolic potential) for variable periods of time. At times between 0.2 and 1 s, INa-Ca exhibited a voltage-dependent increase in amplitude over time, i.e. INa-Ca recovered more rapidly from -70 mV than from -40 mV. At times > 2 s, INa-Ca exhibited a voltage-dependent decline in amplitude over time, i.e. from -40 mV INa-Ca decreased by 10% of maximum whereas from -70 mV INa-Ca decreased by 60% of maximum.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.从猫右心房中分离出单个潜伏的起搏器细胞,并使用制霉菌素穿孔的贴片记录方法对全细胞进行研究。制霉菌素方法避免了细胞内Ca2 +,细胞成分的改变和离子电流的减少。 2. -40 mV的去极化电压钳制脉冲引发L型Ca2 +电流(ICa),该电流表现出初始的快速灭活阶段,随后是次级慢速内向电流分量,衰减了大约100 ms。在短时间(10-40 ms)去极化钳位之后,次级向内分量表现为缓慢衰减的向内尾电流。 3.通过使用破裂膜片记录方法在内部用2 mM EGTA透析起搏器细胞,消除了缓慢衰减的内向电流。通过暴露于1 microM ryanodine也可以消除内向尾电流,并且通过用锂代替85%的外部Na +可以显着降低内向尾电流,而不会影响峰值ICa。这些发现确定了由肌质网(SR)Ca2 +释放介导的Na(+)-Ca2 +交换电流(INa-Ca)。 4. INa-Ca和ICa的特性存在显着差异:(i)ICa呈现出钟形的电压依赖性,该依赖性在0 mV时达到峰值,而在更多的正电压时降低。 INa-Ca在-10 mV时最大,在更多的正电压下保持相对恒定。 (ii)配对脉冲协议显示,INa-Ca恢复的时间过程(5 s)明显长于ICa的时间过程(2 s); (iii)镉(50 microM)诱导的ICa抑制作用与时间上与INa-Ca的变化不相关。 5.去极化步骤的持续时间在10到120 ms之间对INa-Ca尾电流的时间过程没有影响。 6.异丙肾上腺素>或= 5 x 10(-8)M会显着增加峰值ICa振幅,峰值INa-Ca振幅,加速的INa-Ca衰减速率并减少INa-Ca衰减的绝对时间。 7.在舒张期期间,在-40或-70 mV(最大舒张电位)期间,将自由起搏器动作电位钳制在可变的时间段内。在0.2到1 s之间的时间中,INa-Ca随时间的变化呈现出电压依赖性的幅度增加,即INa-Ca从-70 mV到-40 mV的恢复速度更快。在大于2 s的时间,INa-Ca随时间的变化呈现出电压依赖性的幅度下降,即从-40 mV INa-Ca下降了最大值的10%,而从-70 mV INa-Ca下降了最大值的60%。(摘要以400字截断)

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