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电压钳制下内部灌注犬心脏浦肯野细胞中的钠电流。

Sodium current in voltage clamped internally perfused canine cardiac Purkinje cells.

作者信息

Makielski J C, Sheets M F, Hanck D A, January C T, Fozzard H A

出版信息

Biophys J. 1987 Jul;52(1):1-11. doi: 10.1016/S0006-3495(87)83182-X.

Abstract

Study of the excitatory sodium current (INa) intact heart muscle has been hampered by the limitations of voltage clamp methods in multicellular preparations that result from the presence of large series resistance and from extracellular ion accumulation and depletion. To minimize these problems we voltage clamped and internally perfused freshly isolated canine cardiac Purkinje cells using a large bore (25-microns diam) double-barreled flow-through glass suction pipette. Control of [Na+]i was demonstrated by the agreement of measured INa reversal potentials with the predictions of the Nernst relation. Series resistance measured by an independent microelectrode was comparable to values obtained in voltage clamp studies of squid axons (less than 3.0 omega-cm2). The rapid capacity transient decays (tau c less than 15 microseconds) and small deviations of membrane potential (less than 4 mV at peak INa) achieved in these experiments represent good conditions for the study of INa. We studied INa in 26 cells (temperature range 13 degrees-24 degrees C) with 120 or 45 mM [Na+]o and 15 mM [Na+]i. Time to peak INa at 18 degrees C ranged from 1.0 ms (-40 mV) to less than 250 microseconds (+ 40 mV), and INa decayed with a time course best described by two time constants in the voltage range -60 to -10 mV. Normalized peak INa in eight cells at 18 degrees C was 2.0 +/- 0.2 mA/cm2 with [Na+]o 45 mM and 4.1 +/- 0.6 mA/cm2 with [Na+]o 120 mM. These large peak current measurements require a high density of Na+ channels. It is estimated that 67 +/- 6 channels/micron 2 are open at peak INa, and from integrated INa as many as 260 Na+ channels/micron2 are available for opening in canine cardiac Purkinje cells.

摘要

由于多细胞制剂中电压钳方法存在局限性,这些局限性源于大串联电阻的存在以及细胞外离子的积累和消耗,兴奋性钠电流(INa)在完整心肌中的研究受到了阻碍。为了尽量减少这些问题,我们使用大口径(直径25微米)的双管流通式玻璃吸引微电极对新鲜分离的犬心脏浦肯野细胞进行电压钳制和内部灌注。通过测量的INa反转电位与能斯特关系预测值的一致性,证明了对[Na+]i的控制。用独立微电极测量的串联电阻与在鱿鱼轴突电压钳研究中获得的值相当(小于3.0Ω·cm2)。在这些实验中实现的快速电容瞬变衰减(τc小于15微秒)和膜电位的小偏差(在INa峰值时小于4 mV)代表了研究INa的良好条件。我们在26个细胞(温度范围13℃至24℃)中研究了INa,细胞外[Na+]o为120或45 mM,细胞内[Na+]i为15 mM。在18℃时,INa达到峰值的时间范围为1.0毫秒(-40 mV)至小于250微秒(+40 mV),并且在-60至-10 mV的电压范围内,INa的衰减过程最好用两个时间常数来描述。在18℃时,八个细胞中,当[Na+]o为45 mM时,归一化的峰值INa为2.0±0.2 mA/cm2,当[Na+]o为120 mM时,归一化的峰值INa为4.1±0.6 mA/cm2。这些大的峰值电流测量需要高密度的Na+通道。据估计,在INa峰值时,每平方微米有67±6个通道开放,并且从积分的INa来看,在犬心脏浦肯野细胞中每平方微米多达260个Na+通道可用于开放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de25/1329977/2c046bd57936/biophysj00164-0004-a.jpg

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