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小鼠蓝斑起搏电流的发育变化。

Developmental changes in pacemaker currents in mouse locus coeruleus neurons.

机构信息

School of Biomedical Sciences and Pharmacy, University of Newcastle, University Drive, NSW 2308, Australia.

出版信息

Brain Res. 2011 Nov 24;1425:27-36. doi: 10.1016/j.brainres.2011.09.053. Epub 2011 Oct 1.

Abstract

The present study compares the electrophysiological properties and the primary pacemaker currents that flow during the interspike interval in locus coeruleus (LC) neurons from infant (P7-12 days) and young adult (8-12 weeks) mice. The magnitude of the primary pacemaker currents, which consist of an excitatory TTX-sensitive Na(+) current and an inhibitory voltage-dependent K(+) current, increased in parallel during development. We found no evidence for the involvement of hyperpolarization-activated (I(H)) or Ca(2+) currents in pacemaking in infant or adult LC neurons. The incidence of TTX-resistant spikes, observed during current clamp recordings, was greater in adult neurons. Neurons from adult animals also showed an increase in voltage fluctuations, during the interspike interval, as revealed in the presence of the K(+) channel blocker, 4-AP (1mM). In summary, our results suggest that mouse LC neurons undergo changes in basic electrophysiological properties during development that influence pacemaking and hence spontaneous firing in LC neurons.

摘要

本研究比较了来自婴儿(7-12 天)和年轻成年(8-12 周)小鼠蓝斑核(LC)神经元在尖峰间隔期间流动的电生理特性和主要起搏电流。主要起搏电流的幅度在发育过程中平行增加,由兴奋性 TTX 敏感的 Na(+)电流和抑制性电压依赖性 K(+)电流组成。我们没有发现参与婴儿或成年 LC 神经元起搏的超极化激活(I(H))或 Ca(2+)电流的证据。在电流钳记录期间观察到的 TTX 抗性尖峰的发生率在成年神经元中更高。来自成年动物的神经元也显示在存在 K(+)通道阻断剂 4-AP(1mM)时,在尖峰间隔期间电压波动增加。总之,我们的结果表明,小鼠 LC 神经元在发育过程中经历基本电生理特性的变化,这些变化影响 LC 神经元的起搏和自发性放电。

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