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低电压激活钙电流和细胞外钙在控制发育中CA1锥体神经元放电模式中的作用。

Role of low-voltage-activated calcium current and extracellular calcium in controlling the firing pattern of developing CA1 pyramidal neurons.

作者信息

Sánchez-Aguilera Alberto, Sánchez-Alonso José Luis, Vicente-Torres María Ángeles, Colino Asunción

机构信息

Departamento de Fisiología, Facultad de Medicina, Universidad Complutense, 28040 Madrid, Spain.

Departamento de Fisiología, Facultad de Medicina, Universidad Complutense, 28040 Madrid, Spain.

出版信息

Neuroscience. 2017 Mar 6;344:89-101. doi: 10.1016/j.neuroscience.2016.12.024. Epub 2016 Dec 28.

Abstract

The firing pattern of individual neurons is an important element for information processing and storing. During the first weeks of development, there is a transitional period during which CA1 pyramidal neurons display burst-spiking behavior in contrast to the adult regular-firing pattern. Spike after-depolarizations (ADPs) constitute a major factor underlying burst-spiking behavior. Using current-clamp recordings, we studied ADP waveforms and firing patterns in CA1 pyramidal neurons of Wistar rats from 9 to 19 postnatal days (P9-19). The percentage of burst-spiking neurons increased up to P16, in correlation with the emergence of an active component in the ADP. The application of low-voltage-activated (LVA) calcium channel blockers such as nickel or mibefradil suppressed the generation of the active ADP component and burst-spiking behavior. In agreement with the development of the ADP waveform and burst-spiking behavior, voltage-clamp experiments in dissociated pyramidal neurons showed an increase in the LVA calcium current in P16-19 vs P9-12. Finally, we found that a reduction of extracellular calcium levels decreases the percentage of burst-spiking cells due to a reduction in the active component of the ADP. We conclude that a major contribution of LVA calcium channels to ADP determines the bursting capability of CA1 pyramidal neurons during a transitional postnatal period in contrast to adulthood.

摘要

单个神经元的放电模式是信息处理和存储的重要元素。在发育的最初几周,存在一个过渡期,在此期间,与成年期的规则放电模式相比,CA1锥体神经元表现出爆发式放电行为。锋电位后去极化(ADP)是爆发式放电行为的一个主要潜在因素。我们使用电流钳记录法,研究了出生后9至19天(P9 - 19)的Wistar大鼠CA1锥体神经元中的ADP波形和放电模式。爆发式放电神经元的百分比在P16之前不断增加,这与ADP中一个活性成分的出现相关。应用低电压激活(LVA)钙通道阻滞剂,如镍或米贝地尔,可抑制活性ADP成分的产生和爆发式放电行为。与ADP波形和爆发式放电行为的发育情况一致,对分离的锥体神经元进行的电压钳实验表明,与P9 - 12相比,P16 - 19时LVA钙电流增加。最后,我们发现细胞外钙水平的降低会由于ADP活性成分的减少而降低爆发式放电细胞的百分比。我们得出结论,与成年期相比,LVA钙通道对ADP的主要贡献决定了出生后过渡期CA1锥体神经元的爆发能力。

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