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首页> 外文期刊>The Journal of general physiology >Membrane current following activity in canine cardiac Purkinje fibers.
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Membrane current following activity in canine cardiac Purkinje fibers.

机译:犬心脏浦肯野纤维活动后的膜电流。

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Membrane current following prolonged periods of rapid stimulation was examined in short (less than 1.5 mm) canine cardiac Purkinje fibers of radius less than 0.15 mm. The Purkinje fibers were repetitively stimulated by delivering trains of depolarizing voltage clamp pulses at rapid frequencies. The slowly decaying outward current following repetitive stimulation ("post-drive" current) is eliminated by the addition of 10(-5) M dihydro-ouabain. The post-drive current is attributed to enhanced Na/K exchange caused by Na loading during the overdrive. Depolarizing voltage clamp pulses initiated from negative (-80 mV) or depolarized (-50 mV) holding potentials can give rise to post-drive current because of activation of tetrodotoxin-sensitive or D600-sensitive channels. The magnitude of the post-drive current depends on the frequency of voltage clamp pulses, the duration of each pulse, and the duration of the repetitive stimulation. The time constant of decay of the post-drive current depends on extracellular [K] in accordance with Michaelis-Menten kinetics. The Km is 1.2 mM bulk [K], [K]B. The mean time constant in 4 mM [K]B is 83 s. Epinephrine (10(-5) M) decreases the time constant by 20%. The time constant is increased by lowering [Ca]o between 4 and 1 mM. Lowering [Ca]o further, to 0.1 mM, eliminates post-drive current following repetitive stimulation initiated from depolarized potentials. The latter result suggests that slow inward Ca2+ current may increase [Na]i via Na/Ca exchange.
机译:在半径小于0.15毫米的短(小于1.5毫米)犬心脏Purkinje纤维中检查了长时间快速刺激后的膜电流。通过以快速频率传递一系列去极化电压钳位脉冲来重复刺激浦肯野纤维。通过添加10(-5)M二氢-哇巴因消除了重复刺激后缓慢衰减的向外电流(“驱动后”电流)。驱动后电流归因于过驱动过程中Na加载引起的Na / K交换增强。由于河豚毒素敏感或D600敏感通道的激活,从负(-80 mV)或去极化(-50 mV)保持电势启动的去极化电压钳位脉冲会产生驱动后电流。驱动后电流的大小取决于电压钳位脉冲的频率,每个脉冲的持续时间以及重复刺激的持续时间。驱动后电流衰减的时间常数取决于米歇尔-门腾动力学的细胞外[K]。 Km为1.2 mM体积[K],[K] B。 4 mM [K] B中的平均时间常数为83 s。肾上腺素(10(-5)M)使时间常数减少20%。通过将CaO降低4至1 mM,可以增加时间常数。将CaO进一步降低至0.1mM,消除了由去极化电势引起的重复刺激后的驱动后电流。后一结果表明,缓慢的Ca 2+内向电流可通过Na / Ca交换增加Na i。

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