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猫和兔结肠分离的单个平滑肌细胞的动作电位和膜电流

Action potentials and membrane currents of isolated single smooth muscle cells of cat and rabbit colon.

作者信息

Bielefeld D R, Hume J R, Krier J

机构信息

Department of Physiology, Michigan State University, East Lansing 48824-1101.

出版信息

Pflugers Arch. 1990 Mar;415(6):678-87. doi: 10.1007/BF02584005.

Abstract

Membrane potentials, action potentials and macroscopic currents in enzymatically dispersed, single smooth muscle cells of the circular layer of cat and rabbit colon were investigated. The cells did not exhibit spontaneous depolarizations and repolarizations (slow waves) or spontaneous action potentials. Single action potentials of smooth muscle cells were evoked by depolarizing current pulses of 5 ms to 3 s duration. A repetitive action potential discharge and an increase in the duration of the action potential was observed in cells during long depolarizing current pulses by superfusion with tetraethylammonium (TEA) or 4-aminopyridine (4-AP). Tetrodotoxin (TTX) did not alter the configuration of the action potential. Voltage-clamp experiments revealed two major outward macroscopic currents: a quasi-instantaneous (time-independent) and a time-dependent outward current. Both currents were identified as potassium (K) currents due to their pharmacological sensitivity to K antagonists [TEA, 4-AP and cesium (Cs)] and due to the reversal potential of outward tail currents. Barium selectively blocked the time-independent current. A time-dependent outward K current in colon cells was observed which appeared to be dependent upon entry of calcium ions (Ca2+) through voltage-dependent Ca-channels, since it was blocked by cadmium and low concentrations of nifedipine. The majority of cells did not exhibit transient outward currents. Inward currents were exposed in some of the cells when the K currents were blocked by external TEA and by replacement of K by Cs and TEA in the recording pipette. Inward currents were presumably carried by Ca2+, since they were not altered by TTX, were sensitive to external Ca concentrations and were abolished by the Ca channel antagonist, nifedipine. Carbachol augmented the amplitude of the inward Ca current.

摘要

对猫和兔结肠环形层经酶分散的单个平滑肌细胞的膜电位、动作电位和宏观电流进行了研究。这些细胞未表现出自发的去极化和复极化(慢波)或自发动作电位。通过持续5毫秒至3秒的去极化电流脉冲可诱发平滑肌细胞的单个动作电位。在用四乙铵(TEA)或4-氨基吡啶(4-AP)进行灌流时,在长时间去极化电流脉冲期间,细胞中观察到重复动作电位发放和动作电位持续时间增加。河豚毒素(TTX)并未改变动作电位的形态。电压钳实验揭示了两种主要的外向宏观电流:一种准瞬时(与时间无关)外向电流和一种与时间相关的外向电流。由于它们对钾拮抗剂[TEA、4-AP和铯(Cs)]的药理学敏感性以及外向尾电流的反转电位,这两种电流均被确定为钾(K)电流。钡选择性地阻断了与时间无关的电流。观察到结肠细胞中一种与时间相关的外向钾电流,它似乎依赖于钙离子(Ca2+)通过电压依赖性钙通道的内流,因为它被镉和低浓度硝苯地平阻断。大多数细胞未表现出瞬时外向电流。当外部TEA阻断钾电流以及在记录微电极中用Cs和TEA替代钾时,在一些细胞中暴露了内向电流。内向电流可能由Ca2+携带,因为它们不受TTX影响,对外部钙浓度敏感且被钙通道拮抗剂硝苯地平消除。卡巴胆碱增加了内向钙电流幅度。

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