Suppr超能文献

大鼠嗅周皮质锥体细胞中复苏的钠离子电流:通道的轴突定位及其在重复放电期间对去极化驱动的作用

Resurgent Na+ current in pyramidal neurones of rat perirhinal cortex: axonal location of channels and contribution to depolarizing drive during repetitive firing.

作者信息

Castelli Loretta, Biella Gerardo, Toselli Mauro, 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

J Physiol. 2007 Aug 1;582(Pt 3):1179-93. doi: 10.1113/jphysiol.2007.135350. Epub 2007 May 24.

Abstract

The perirhinal cortex (PRC) is a supra-modal cortical area that collects and integrates information originating from uni- and multi-modal neocortical regions and directed to the hippocampus. The mechanisms that underlie the specific excitable properties of the different PRC neuronal types are still largely unknown, and their elucidation may be important in understanding the integrative functions of PRC. In this study we investigated the expression and properties of resurgent Na(+) current (I(NaR)) in pyramidal neurones of rat PRC area 35 (layer II). Patch-clamp experiments in acute PRC slices were first carried out. A measurable I(NaR) was expressed by a large majority of neurones (31 out of 35 cells). I(NaR) appeared as an inward, slowly decaying current elicited upon step repolarization after depolarizations sufficient to induce nearly complete inactivation of the transient Na(+) current (I(NaT)). I(NaR) had a peak amplitude of approximately 2.5% that of I(NaT), and showed the typical biophysical properties also observed in other neuronal types (i.e. cerebellar Purkinje and granule cells), including a bell-shaped current-voltage relationship with a peak at approximately -40 mV, and a characteristic acceleration of activation and decay speed at potentials negative to -45 mV. Current-clamp experiments were then carried out in which repetitive action-potential discharge at various frequencies was induced with depolarizing current injection. The voltage signals thus obtained were then used as command waveforms for voltage-clamp recordings. These experiments showed that a Na(+) current identifiable as I(NaR) activates in the early interspike phase even at relatively high firing frequencies (20 Hz), thereby contributing to the depolarizing drive and possibly enhancing repetitive discharge. In acutely dissociated area 35 layer II neurones, as well as in nucleated patches from the same neurones, I(NaR) was never observed, despite the presence of typical I(NaT)s. Since in both preparations neuronal processes are lost, we carried out experiments of focal tetrodotoxin (TTX) application in slices to verify whether the channels responsible for I(NaR) are located in compartment(s) different from the soma. We found that TTX preferentially inhibited I(NaR) when applied close to the site of axon emergence from soma, whereas application to the apical pole of the soma had a significantly smaller effect on I(NaR). Our results indicate that in area 35 pyramidal cells I(NaR) is largely generated in the axon initial segment, where it may participate in setting the coding properties of these neurones.

摘要

嗅周皮质(PRC)是一个超模式皮质区域,它收集并整合源自单模式和多模式新皮质区域并导向海马体的信息。不同PRC神经元类型的特定可兴奋特性背后的机制在很大程度上仍然未知,对其进行阐明可能对理解PRC的整合功能很重要。在本研究中,我们调查了大鼠PRC 35区(II层)锥体神经元中复苏钠电流(I(NaR))的表达和特性。首先在急性PRC切片上进行了膜片钳实验。绝大多数神经元(35个细胞中的31个)表达了可测量的I(NaR)。I(NaR)表现为在去极化足以诱导瞬时钠电流(I(NaT))几乎完全失活后进行阶跃复极化时引发的内向、缓慢衰减的电流。I(NaR)的峰值幅度约为I(NaT)的2.5%,并表现出在其他神经元类型(即小脑浦肯野细胞和颗粒细胞)中也观察到的典型生物物理特性,包括呈钟形的电流-电压关系,峰值在约-40 mV处,以及在负于-45 mV的电位下激活和衰减速度的特征性加速。然后进行了电流钳实验,其中通过注入去极化电流诱导了不同频率的重复动作电位发放。然后将由此获得的电压信号用作电压钳记录的指令波形。这些实验表明,即使在相对较高的发放频率(20 Hz)下可识别为I(NaR)的钠电流也在峰间早期阶段激活,从而有助于去极化驱动并可能增强重复发放。在急性分离的35区II层神经元以及来自同一神经元的有核膜片中,尽管存在典型的I(NaT),但从未观察到I(NaR)。由于在这两种制备物中神经元突起都丢失了,我们在切片中进行了局部应用河豚毒素(TTX)的实验,以验证负责I(NaR)的通道是否位于与胞体不同的区室中。我们发现,当在靠近轴突从胞体发出的部位应用TTX时,它优先抑制I(NaR),而应用于胞体的顶端极对I(NaR)的影响则明显较小。我们的结果表明,在35区锥体细胞中,I(NaR)主要在轴突起始段产生,在那里它可能参与设定这些神经元的编码特性。

相似文献

10
Resurgent Na currents in four classes of neurons of the cerebellum.小脑四类神经元中复苏的钠电流。
J Neurophysiol. 2004 Nov;92(5):2831-43. doi: 10.1152/jn.00261.2004. Epub 2004 Jun 22.

引用本文的文献

2
Resurgent Sodium Current in Neurons of the Cerebral Cortex.大脑皮层神经元中的复苏钠电流
Front Cell Neurosci. 2021 Oct 1;15:760610. doi: 10.3389/fncel.2021.760610. eCollection 2021.
9
Resurgent current of voltage-gated Na(+) channels.电压门控性钠通道的复苏电流
J Physiol. 2014 Nov 15;592(22):4825-38. doi: 10.1113/jphysiol.2014.277582. Epub 2014 Aug 28.

本文引用的文献

1
Genome-wide atlas of gene expression in the adult mouse brain.成年小鼠大脑基因表达的全基因组图谱。
Nature. 2007 Jan 11;445(7124):168-76. doi: 10.1038/nature05453. Epub 2006 Dec 6.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验