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对小牛浦肯野纤维中起搏电流的一种新解释。

A new interpretation of the pace-maker current in calf Purkinje fibres.

作者信息

DiFrancesco D

出版信息

J Physiol. 1981 May;314:359-76. doi: 10.1113/jphysiol.1981.sp013713.

DOI:10.1113/jphysiol.1981.sp013713
PMID:6273533
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1249439/
Abstract
  1. The properties of the 'pace-maker' current iK2 of Purkinje fibres are investigated to verify whether its behaviour during voltage-clamp pulses is consistent with the view that iK2 is a K current deactivating on hyperpolarization in the range -50 to -100 mV. 2. During voltage-clamp pulses in the range positive to the apparent reversal potential (Erev), low concentrations of Cs depress the time-dependent current change without altering the time-independent current component. The total current becomes more outward in Cs, which on the assumption that Cs only affects the iK1 and iK2 channels implies that iK2 is inward in the voltage range analysed. 3. Ba strongly reduces the time-independent component due to iK1 and therefore limits the contribution of K depletion to the total current time course during hyperpolarizations. In the presence of barium a current reversal is not obtained even with large hyperpolarizations in normal Tyrode solution. If in Ba-containing solutions the external K concentration is raised from 3 up to 48 mM, iK2 greatly increases in the inward direction during hyperpolarizations in the range -51 to -101 mV, implying that it cannot be carried by K only. 4. In the presence of Ba, measurements of the membrane conductance due to iK2 indicate a channel-opening process during hyperpolarizations and a channel-closing process during depolarizations, in the K-concentration range analysed. 5. It is concluded that iK2 is not, as had been previously thought, a pure K current, but is rather an inward current activated during hyperpolarizations negative to about -50 mV. This provides further evidence for a possible identity between iK2 in Purkinje fibres and the current if in the SA node.
摘要
  1. 对浦肯野纤维的“起搏”电流iK2的特性进行了研究,以验证其在电压钳制脉冲期间的行为是否与iK2是一种在-50至-100 mV超极化时失活的钾电流这一观点一致。2. 在高于明显反转电位(Erev)的电压钳制脉冲期间,低浓度的铯会抑制时间依赖性电流变化,而不会改变时间非依赖性电流成分。在铯存在的情况下,总电流变得更外向,假设铯仅影响iK1和iK2通道,这意味着在分析的电压范围内iK2是内向的。3. 钡强烈降低了由iK1引起的时间非依赖性成分,因此限制了超极化期间钾离子耗尽对总电流时间进程的贡献。在正常台氏液中,即使有大的超极化,在含钡溶液中也不会出现电流反转。如果在含钡溶液中,外部钾浓度从3 mM提高到48 mM,在-51至-101 mV范围内的超极化期间,iK2在内向方向上会大大增加,这意味着它不能仅由钾离子携带。4. 在钡存在的情况下,对由iK2引起的膜电导的测量表明,在分析的钾浓度范围内,超极化期间有通道开放过程,去极化期间有通道关闭过程。5. 得出的结论是,iK2并非如先前所想的那样是一种纯钾电流,而是在约-50 mV以下的超极化期间激活的内向电流。这为浦肯野纤维中的iK2与窦房结中的电流if可能具有同一性提供了进一步的证据。

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本文引用的文献

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Voltage-clamp investigations of membrane currents underlying pace-maker activity in rabbit sino-atrial node.对兔窦房结起搏活动潜在膜电流的电压钳研究。
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Mechanisms underlying cessation of rabbit sinoatrial node pacemaker activity in high potassium solutions.高钾溶液中兔窦房结起搏活动停止的潜在机制。
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Cardiac Purkinje fibers: cesium as a tool to block inward rectifying potassium currents.心脏浦肯野纤维:铯作为阻断内向整流钾电流的工具。
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The effects of potassium and temperature on the pace-maker current, iK2, in Purkinje fibres.钾离子和温度对浦肯野纤维起搏电流iK2的影响。
J Physiol. 1976 Aug;260(1):55-74. doi: 10.1113/jphysiol.1976.sp011504.
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