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条件极化对大鼠子宫肌层膜离子电流的影响。

Effects of conditioning polarization on the membrane ionic currents in rat myometrium.

作者信息

Muramatsu I, Kumamoto M, Fujiwara M

出版信息

J Membr Biol. 1978 Dec 29;44(3-4):331-52. doi: 10.1007/BF01944228.

Abstract

Membrane ionic currents were measured in pregnant rat uterine smooth muscle under voltage clamp conditions by utilizing the double sucrose gap method, and the effects of conditioning pre-pulses on these currents were investigated. With depolarizing pulses, the early inward current was followed by a late outward current. Cobalt (1 mM) abolished the inward current and did not affect the late outward current per se, but produced changes in the current pattern, suggesting that the inward current overlaps with the initial part of the late outward current. After correction for this overlap, the inward current reached is maximum at about +10 mV and its reversal potential was estimated to be +62 mV. Tetraethylammonium (TEA) suppressed the outward currents and increased the apparent inward current. The increase in the inward current by TEA thus could be due to a suppression of the outward current. The reversal potential for the outward current was estimated to be -87 mV. Conditioning depolarization and hyperpolarization both produced a decrease in the inward current. Complete depolarization block occurred at membrane potential of -20 mV. Conditioning hyperpolarization experiments in the presence of cobalt and/or TEA revealed that the decrease in the inward current caused by conditioning hyperpolarization was a result of an increase in the outward current overlaping with the inward current. It appears that a part of the potassium channel population is inactivated at the resting membrane potential and that this inactivation is removed by hyperpolarization.

摘要

利用双蔗糖间隙法在电压钳制条件下测量了妊娠大鼠子宫平滑肌的膜离子电流,并研究了预处理脉冲对这些电流的影响。施加去极化脉冲时,早期内向电流之后是晚期外向电流。钴(1 mM)消除了内向电流,本身并不影响晚期外向电流,但改变了电流模式,表明内向电流与晚期外向电流的起始部分重叠。校正这种重叠后,内向电流在约+10 mV时达到最大值,其反转电位估计为+62 mV。四乙铵(TEA)抑制外向电流并增加表观内向电流。因此,TEA引起的内向电流增加可能是由于外向电流的抑制。外向电流的反转电位估计为-87 mV。预处理去极化和超极化均导致内向电流降低。在膜电位为-20 mV时发生完全去极化阻滞。在存在钴和/或TEA的情况下进行的预处理超极化实验表明,预处理超极化引起的内向电流降低是由于与内向电流重叠的外向电流增加所致。似乎一部分钾通道群体在静息膜电位时失活,并且这种失活通过超极化被消除。

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