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细胞内灌注乌贼巨轴突中内外源性4-氨基吡啶对钾电流的影响。

The effect of internal and external 4-aminopyridine on the potassium currents in intracellularly perfused squid giant axons.

作者信息

Meves H, Pichon Y

出版信息

J Physiol. 1977 Jun;268(2):511-32. doi: 10.1113/jphysiol.1977.sp011869.

Abstract
  1. The effect of 4-aminopyridine (4-AP) on the K outward and inward currents in perfused giant axons of Loligo forbesi has been studied with the voltage-clamp technique.2. Small internal or external 4-AP concentrations (10-100 muM) considerably delay the rise of the K outward current. Repetitive pulsing with a pulse interval of 0.1-5 sec leads to a faster rise of the K current; in 10 muM 4-AP a small effect is visible even with a pulse interval of 60 sec.3. The phenomenon has been studied quantitatively by using a prepulse of varying height and duration, followed after 5 sec by a constant test pulse. The effect of changing the holding potential has been investigated.4. The effect of repetitive pulsing disappears in higher 4-AP concentrations; 1-10 mM 4-AP markedly reduce the size of the K outward current; the blocking effect is less pronounced for large depolarizing pulses than for small.5. In K-rich sea water 4-AP reduces both the K outward current and the K inward current; the blocking effect on the K outward current is smaller than in K-free sea water.6. The K outward current in fibres treated with 10 muM 4-AP and immersed in K-rich sea water is increased and accelerated by repetitive depolarizing pulses. The effect of repetitive pulsing is not dependent on the size of the K outward current (which can be increased by removing K inactivation).7. The effect of repetitive pulsing and the voltage dependence of the 4-AP block can be explained by the hypothesis that 4-AP molecules are displaced from their blocking sites during the pulse and slowly rebound afterwards. Removal of the 4-AP block by a depolarizing pulse seems to be a direct effect of the potential during the pulse and not related to K current.
摘要
  1. 运用电压钳技术研究了4-氨基吡啶(4-AP)对灌注的福布斯枪乌贼巨大轴突中钾离子外向和内向电流的影响。

  2. 低浓度的内部或外部4-AP(10 - 100μM)会显著延迟钾离子外向电流的上升。以0.1 - 5秒的脉冲间隔进行重复脉冲会使钾离子电流上升更快;在10μM的4-AP中,即使脉冲间隔为60秒也能看到轻微的效果。

  3. 通过使用不同高度和持续时间的预脉冲,随后在5秒后施加恒定测试脉冲,对该现象进行了定量研究。研究了改变钳制电位的影响。

  4. 在较高浓度的4-AP中,重复脉冲的效果消失;1 - 10 mM的4-AP显著减小钾离子外向电流的大小;对于大的去极化脉冲,阻断作用不如小脉冲明显。

  5. 在富含钾的海水中,4-AP会降低钾离子外向电流和钾离子内向电流;对钾离子外向电流的阻断作用比在无钾海水中小。

  6. 用10μM 4-AP处理并浸泡在富含钾的海水中的纤维中的钾离子外向电流,会因重复去极化脉冲而增加并加速。重复脉冲的效果不依赖于钾离子外向电流的大小(可通过去除钾离子失活来增加)。

  7. 重复脉冲的效果和4-AP阻断的电压依赖性可以通过以下假设来解释:在脉冲期间,4-AP分子从其阻断位点被置换,随后缓慢反弹。去极化脉冲去除4-AP阻断似乎是脉冲期间电位的直接作用,与钾离子电流无关。

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