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体外记录的大鼠视上核神经分泌神经元中的钙依赖性动作电位。

Calcium-dependent action potentials in rat supraoptic neurosecretory neurones recorded in vitro.

作者信息

Bourque C W, Renaud L P

出版信息

J Physiol. 1985 Jun;363:419-28. doi: 10.1113/jphysiol.1985.sp015719.

Abstract

Intracellular recordings obtained from thirty-nine supraoptic nucleus neurones in perfused hypothalamic explants displayed a mean resting membrane potential of -69 mV and spike amplitude of 79 mV. Voltage-current plots were linear in the hyperpolarizing direction and revealed a mean slope resistance of 197 M omega. After Na+ channel blockade with tetrodotoxin (TTX; 0.3-16 microM), the voltage-current relationship did not change significantly for hyperpolarizing pulses. An increase in spike threshold in TTX permitted visualization of a reduction in slope resistance to depolarizing current pulses. This rectification was reduced by the addition of the Ca2+ channel blockers Cd2+, Co2+ or Mn2+. High threshold TTX-resistant spikes with amplitudes ranging between 25 and 64 mV were evoked in an all-or-none manner by brief intracellular current pulses applied above 1.0 Hz. Current pulses presented at lower frequencies (less than or equal to 0.5 Hz) evoked graded responses. In seventeen of nineteen cells, prolonged depolarizing current pulses elicited repetitive firing of TTX-resistant spikes with a progressive increase in their amplitude, rise and fall times and after-hyperpolarizations. TTX-resistant spikes were reversibly abolished when CaCl2 was replaced by equimolar amounts of EGTA or by the addition of either Cd2+, Co2+ or Mn2+ to the perfusion medium. In artificial medium containing EGTA, both the shoulder on the repolarization phase of the spike and the subsequent after-hyperpolarization were reversibly abolished. Tetraethylammonium (TEA; 2-5 mM) induced prolongation of mean action potential durations from 1.9 to 12.3 ms (nineteen cells); in TTX, TEA also prolonged the duration and increased the over-all peak amplitude of the TTX-resistant (Ca2+) spike. While TEA also enhanced the amplitude of the Na+ spike, no comparable prolongation in spike duration was observed. These data indicate that somatic action potentials of supraoptic nucleus cells arise from the co-activation of a low threshold Na+ conductance and a higher threshold Ca2+ conductance; the latter is expressed as a shoulder on the repolarization phase of the action potential.

摘要

从灌流的下丘脑外植体中的39个视上核神经元获得的细胞内记录显示,平均静息膜电位为-69 mV,动作电位幅度为79 mV。电压-电流曲线在超极化方向呈线性,平均斜率电阻为197 MΩ。在用河豚毒素(TTX;0.3 - 16 μM)阻断钠通道后,超极化脉冲的电压-电流关系没有显著变化。TTX中动作电位阈值的增加使得能够观察到去极化电流脉冲斜率电阻的降低。加入钙通道阻滞剂Cd2+、Co2+或Mn2+可减少这种整流现象。通过高于1.0 Hz施加的短暂细胞内电流脉冲,以全或无的方式诱发了幅度在25至64 mV之间的高阈值TTX抗性动作电位。较低频率(小于或等于0.5 Hz)施加的电流脉冲诱发分级反应。在19个细胞中的17个细胞中,长时间的去极化电流脉冲诱发了TTX抗性动作电位的重复发放,其幅度、上升和下降时间以及超极化后电位逐渐增加。当用等摩尔量的乙二醇双四乙酸(EGTA)替代氯化钙或向灌流介质中加入Cd2+、Co2+或Mn2+时,TTX抗性动作电位可逆地消失。在含有EGTA的人工介质中,动作电位复极化阶段的肩部和随后的超极化后电位都可逆地消失。四乙铵(TEA;2 - 5 mM)使平均动作电位持续时间从1.9 ms延长至12.3 ms(19个细胞);在TTX存在的情况下,TEA也延长了TTX抗性(钙)动作电位的持续时间并增加了其总体峰值幅度。虽然TEA也增强了钠动作电位的幅度,但未观察到动作电位持续时间有类似的延长。这些数据表明,视上核细胞的体细胞动作电位源于低阈值钠电导和较高阈值钙电导的共同激活;后者表现为动作电位复极化阶段的肩部。

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