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首页> 外文期刊>The Journal of Physiology >Caesium blocks depolarizing after-potentials and phasic firing in rat supraoptic neurones.
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Caesium blocks depolarizing after-potentials and phasic firing in rat supraoptic neurones.

机译:铯阻止大鼠超视神经元的去极化后电位和阶段性放电。

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1. The effects of Cs+ on the action potential, post-train after-hyperpolarization (AHP), Ca2+-dependent post-spike depolarizing after-potential (DAP) and phasic firing were examined during intracellular recordings from magnocellular neurosecretory cells (MNCs) in superfused rat hypothalamic explants. 2. Extracellular Cs+ reversibly inhibited (IC50, approximately 1 mM) DAPs, and associated after-discharges, that followed brief spike trains in each of sixteen cells tested. Although bath application of Cs+ also provoked a small reversible depolarization, inhibition of the DAP was retained when membrane voltage was kept constant by current injection. 3. Application of Cs+ had no significant effects on spike duration (n = 8), frequency-dependent spike broadening (n = 8), spike hyperpolarizing after-potentials (n = 14), or the amplitude of the isolated AHP (n = 7). Caesium-evoked inhibition of the DAP, therefore, does not result from diminished spike-evoked Ca2+ influx, and may reflect direct blockade of the conductance underlying the DAP. 4. Inhibition of the DAP was associated with an enhancement of the amplitude and duration of the AHP, indicating that the currents underlying the AHP and the DAP overlap in time following a train of action potentials, and that the relative magnitude of these currents is an important factor in determining the shape and time course of post-train after-potentials. 5. Bath application of Cs+ reversibly abolished phasic firing in each of seven cells tested. This effect was reversible and persisted at all subthreshold voltages tested. These results indicate that the current underlying the DAP is necessary for the genesis of plateau potentials and phasic firing in MNCs.
机译:1.在脑内从大细胞神经分泌细胞(MNCs)的细胞内记录过程中,检查了Cs +对动作电位,训练后超极化(AHP),依赖于Ca2 +的突波后去极化后电位(DAP)和阶段性放电的影响。大鼠下丘脑外植体。 2.细胞外Cs +可逆抑制(IC50,约1 mM)DAP,以及相关的放电后,在测试的16个细胞中的每个细胞中进行短暂的尖峰训练。尽管浴液中加入Cs +也会引起小的可逆去极化,但是当通过电流注入使膜电压保持恒定时,DAP的抑制作用仍然存在。 3. Cs +的使用对尖峰持续时间(n = 8),频率相关的尖峰加宽(n = 8),尖峰超极化后电位(n = 14)或孤立的AHP幅度(n = 7)。因此,铯引起的DAP抑制不是由尖峰诱发的Ca2 +内流减少引起的,并且可能反映了DAP潜在电导的直接阻滞。 4. DAP的抑制与AHP的幅度和持续时间的增加有关,表明AHP和DAP下方的电流在一系列动作电位后在时间上重叠,并且这些电流的相对大小是确定训练后电位的形状和时程的重要因素。 5.浴液中Cs +的使用可逆地消除了所测试的七个电池中的每个电池的相控。这种影响是可逆的,并在所有测试的亚阈值电压下均保持不变。这些结果表明,DAP潜在的电流对于产生跨国公司的平台电位和阶段性放电是必要的。

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