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首页> 外文期刊>The Journal of Physiology >Patch-clamp analysis in canine cardiac Purkinje cells of a novel sodium component in the pacemaker range.
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Patch-clamp analysis in canine cardiac Purkinje cells of a novel sodium component in the pacemaker range.

机译:犬心脏Purkinje细胞中起搏器范围内的新型钠成分的膜片钳分析。

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摘要

A putative Na+ component playing a role in the initiation and maintenance of spontaneous discharge in Purkinje fibres was studied by means of the whole-cell patch-clamp technique in canine cardiac single Purkinje cells. In 4 mM [K+]o, during depolarising clamp steps, a slowly inactivating current appeared at approximately -58 mV, negative to the threshold for the fast Na+ current (INa; approximately -50 mV). During depolarising ramps, the current underwent inward rectification with a negative slope region that began at approximately -60 mV. The current underlying the negative slope increased during faster ramps, decreased as a function of time when the initial depolarising ramp was over, decreased during depolarisations positive to approximately -35 mV and was much larger than the current during the symmetrical repolarising ramp. Increasing biphasic ('oscillatory') voltage ramps required much smaller currents at a holding potential (Vh) of -60 mV than at -80 mV and were associated with a marked decrease in slope conductance. At Vh -50/-40 mV, the oscillatory ramp currents and superimposed pulse currents reversed direction. The negative slope in the I-V relation as well as the change in current direction at -50/-40 mV were markedly reduced by tetrodotoxin (15 microM) and lidocaine (lignocaine, 100 microM) and therefore are due to a slowly inactivating Na+ current, labelled here INa3. Lower [K+]o (2.7 mM) reduced the steady state slope conductance as well as the current in the diastolic range, and increased as well as shifted INa3 in a negative direction. High [K+]o had the opposite effects. Cs+ (2 mM) and Ba2+ (2 mM) reduced the initial current during depolarising ramps but not INa3. In current-clamp mode, current-induced voltage oscillations elicited action potentials through a gradual transition between diastolic depolarisation and upstroke, consistent with the activation of INa3. Thus, the initiation and maintenance of spontaneous discharge in Purkinje strands appear to involve a voltage- and K+-dependent decrease in K+ conductance as well as the activation of a voltage- and time-dependent inward Na+ current (INa3) with slow inactivation kinetics.
机译:通过全细胞膜片钳技术研究了犬心脏单浦肯野细胞中推测的Na +成分在浦肯野纤维中自发放电的发生和维持中的作用。在4 mM [K +] o中,在去极化钳位步骤中,缓慢失活的电流出现在大约-58 mV,与快速Na +电流的阈值(INa;大约-50 mV)负相关。在去极化斜波期间,电流经过向内整流,并带有一个从大约-60 mV开始的负斜率区域。负斜率下的电流在较快的斜坡期间增加,在初始去极化斜坡结束时随时间而减小,在去极化为正时约为-35 mV时减小,并且比对称再极化斜坡期间的电流大得多。增加双相(“振荡”)电压斜率所需的电流在-60 mV的保持电势(Vh)时要比在-80 mV时小得多,并且与斜率电导显着降低有关。在Vh -50 / -40 mV时,振荡斜坡电流和叠加脉冲电流反向。河豚毒素(15 microM)和利多卡因(木酚卡因,100 microM)明显降低了IV关系中的负斜率以及电流方向在-50 / -40 mV处的变化,因此归因于Na +电流缓慢失活,在此处标记为INa3。较低的[K +] o(2.7 mM)会降低稳态斜率电导以及舒张范围内的电流,并且会增加INa3并向负方向移动。高[K +] o具有相反的效果。 Cs +(2 mM)和Ba2 +(2 mM)减小了去极化斜坡期间的初始电流,但没有减小INa3。在电流钳模式下,电流诱导的电压振荡通过舒张期去极化和上冲之间的逐渐过渡来激发动作电位,这与INa3的激活一致。因此,Purkinje链中的自发放电的引发和维持似乎涉及K +电导的电压和K +依赖性降低,以及具有缓慢灭活动力学的电压和时间依赖性内向Na +电流(INa3)的激活。

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