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Sodium current kinetics in cat atrial myocytes.

机译:猫心房肌细胞中的钠电流动力学。

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摘要

1. Na+ current kinetics were studied in isolated atrial myocytes from the adult cat using the single suction-pipette voltage-clamp technique. 2. Current-voltage and conductance-voltage relationships were similar to those described in other cardiac myocyte preparations. 3. Analysis of Na+ current decay using single-pulse, double-pulse and tail current measurements were in agreement and demonstrate a second-order process of current decay. 4. Voltage dependence of steady-state inactivation curves was not symmetrical, having an inflexion at about -90 mV. These results suggest more than a single inactivation process for Na+ channel in the negative potential region. 5. Recovery of Na+ current from inactivation had a sigmoid time course: an initial slow component (delay) followed by a fast and then a second slow component. Increasing the pre-pulse duration slowed the time course of recovery. 6. Taken together, the results were consistent with the presence of multiple inactivated states for the atrial myocyte Na+ channel.
机译:1.使用单吸管电压钳技术研究了成年猫离体心房肌细胞中的Na +电流动力学。 2.电流-电压和电导-电压的关系与其他心肌细胞制剂中描述的相似。 3.使用单脉冲,双脉冲和尾电流测量对Na +电流衰减进行分析是一致的,并证明了电流衰减的第二阶过程。 4.稳态灭活曲线的电压依赖性不对称,在约-90 mV处具有弯曲。这些结果表明负电位区域中Na +通道的灭活过程不止一个。 5.从失活中恢复Na +电流具有S型时间过程:最初的缓慢成分(延迟),然后是快速成分,然后是第二缓慢成分。增加脉冲前持续时间减慢了恢复的时间。 6.两者合计,结果与心房肌细胞Na +通道的多个失活状态的存在一致。

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