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大鼠海马旁皮质和海马结构中复苏钠电流表达的分析。

Analysis of resurgent sodium-current expression in rat parahippocampal cortices and hippocampal formation.

作者信息

Castelli Loretta, Nigro Maximiliano J, Magistretti Jacopo

机构信息

Dipartimento di Scienze Fisiologiche-Farmacologiche Cellulari-Molecolari, Sezione di Fisiologia Generale e Biofisica Cellulare, Università degli Studi di Pavia, Via Forlanini 6, 27100 Pavia, Italy.

出版信息

Brain Res. 2007 Aug 13;1163:44-55. doi: 10.1016/j.brainres.2007.05.065. Epub 2007 Jun 15.

Abstract

The resurgent Na(+) current (I(NaR)) is a component of neuronal voltage-dependent Na(+) currents that is activated by repolarization and is believed to result from an atypical path of Na(+)-channel recovery from inactivation. So far, I(NaR) has only been identified in a small number of central neuronal populations in the cerebellum, diencephalon, and brainstem. The possible presence and roles of I(NaR) in neurons of the cerebral cortex and temporal-lobe memory system are still uncharacterized. In this study whole-cell, patch-clamp experiments were carried out in acute rat brain slices to investigate I(NaR) expression and properties in several neuronal populations of the parahippocampal region and hippocampal formation. Specifically, we examined pyramidal neurons of perirhinal cortex areas 36 and 35 (layers II and V); neurons of superficial and deep layers of medial entorhinal cortex (mEC); dentate gyrus (DG) granule cells; and pyramidal cells of the CA3 and CA1 hippocampal fields. I(NaR) was found to be thoroughly expressed in parahippocampal cortices. The most consistent and prominent I(NaR) expression was observed in mEC layer-II cells. A vast majority of areas 36 and 35 neurons (both in layers II and V) and mEC layer-III and -V neurons were also endowed with I(NaR), although at lower amplitude levels. I(NaR) was expressed by approximately 60% of DG granule cells and approximately 35% of CA1 pyramidal cells of the ventral hippocampus, whereas it was never observed in CA3 neurons (both in the ventral and dorsal hippocampus) and CA1 neurons of the dorsal hippocampus. The biophysical properties of I(NaR) were very similar in all of the neuronal types in which the current was observed, with a peak in the current-voltage relationship at -35/-40 mV. Our results show that the parahippocampal region and part of the hippocampal formation are sites of major I(NaR) expression, and provide a new basis for further studies on the molecular correlates of I(NaR).

摘要

复苏钠电流(I(NaR))是神经元电压依赖性钠电流的一个组成部分,它由复极化激活,被认为是钠通道从失活状态恢复的非典型途径所致。到目前为止,I(NaR)仅在小脑、间脑和脑干的少数中枢神经元群体中被鉴定出来。I(NaR)在大脑皮层神经元和颞叶记忆系统中的可能存在及作用仍未明确。在本研究中,对急性大鼠脑片进行了全细胞膜片钳实验,以研究海马旁区域和海马结构中几个神经元群体的I(NaR)表达及特性。具体而言,我们检测了36区和35区梨状前皮质(II层和V层)的锥体神经元;内嗅皮质浅层和深层(mEC)的神经元;齿状回(DG)颗粒细胞;以及CA3和CA1海马区的锥体细胞。发现I(NaR)在海马旁皮质中广泛表达。在mEC的II层细胞中观察到最一致且显著的I(NaR)表达。绝大多数36区和35区的神经元(II层和V层)以及mEC的III层和V层神经元也具有I(NaR),尽管其幅度较低。约60%的DG颗粒细胞和约35%的腹侧海马CA1锥体细胞表达I(NaR),而在CA3神经元(腹侧和背侧海马)和背侧海马的CA1神经元中从未观察到I(NaR)。在所有观察到该电流的神经元类型中,I(NaR)的生物物理特性非常相似,电流-电压关系曲线的峰值在-35/-40 mV。我们的结果表明,海马旁区域和部分海马结构是I(NaR)主要表达的部位,并为进一步研究I(NaR)的分子关联提供了新的基础。

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