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具有不同起源的 Cajal-Retzius 细胞的电生理和形态特性。

Electrophysiological and morphological properties of Cajal-Retzius cells with different ontogenetic origins.

机构信息

Institute of Physiology and Pathophysiology, University Medical Center of the Johannes Gutenberg University, Mainz, Germany.

出版信息

Neuroscience. 2010 May 19;167(3):724-34. doi: 10.1016/j.neuroscience.2010.02.043. Epub 2010 Feb 24.

Abstract

The different origins of Cajal-Retzius cells (CRc) as well as their diverse molecular profile suggest that this cell type may represent different neuronal subpopulations. In order to investigate whether CRc from different origins show distinct functional or morphological characteristics we used transgenic Dbx1(cre);ROSA26(YFP) mice in which two subpopulations of CRc, originating from the septum and ventral pallium (VP) at the pallial-subpallial border (PSB), were permanently labeled by yellow fluorescent protein (YFP) expression. Electrophysiological properties of YFP(+) and YFP(-) CRc were investigated by whole-cell patch-clamp recordings, while a thorough somatodendritic and axonal reconstruction of the biocytin labeled CRc was subsequently performed using a Neurolucida system. Our experiments revealed that no significant differences in resting membrane potential, input resistance or capacitance, hyperpolarization activated currents and most action potentials properties could be observed between YFP(+) and YFP(-) CRc. Both YFP(+) and YFP(-) CRc displayed spontaneous and carbachol-induced GABAergic postsynaptic currents with similar properties and comparable NMDA-receptor mediated glutamatergic inward currents that were equally affected by the NR2B specific antagonist ifenprodil. Morphological reconstructions revealed that dendritic and axonal parameters are similar between YFP(+) and YFP(-) CRc, while the dendritic compartment of YFP(+) CRc was slightly larger. In summary, no considerable differences in functional and morphological properties between YFP(+) and YFP(-) CRc could be observed in this study. These observations suggest that CRc of different ontogenic origins display comparable functional properties in the early postnatal cortex and therefore perform similar functions within the transient neuronal networks of the developing cortex.

摘要

Cajal-Retzius 细胞(CRc)的不同起源及其多样化的分子特征表明,这种细胞类型可能代表不同的神经元亚群。为了研究不同起源的 CRc 是否具有不同的功能或形态特征,我们使用了 Dbx1(cre);ROSA26(YFP) 转基因小鼠,其中来自隔核和腹侧苍白球(VP)的两个 CRc 亚群在大脑皮层-皮层下边界(PSB)处通过黄色荧光蛋白(YFP)表达被永久标记。通过全细胞膜片钳记录研究了 YFP(+)和 YFP(-)CRc 的电生理特性,而生物素标记的 CRc 的详细体树突和轴突重建随后使用 Neurolucida 系统进行。我们的实验表明,在 YFP(+)和 YFP(-)CRc 之间,静息膜电位、输入电阻或电容、超极化激活电流以及大多数动作电位特性没有显著差异。YFP(+)和 YFP(-)CRc 均显示具有相似特性的自发性和 carbachol 诱导的 GABA 能突触后电流以及可比较的 NMDA 受体介导的谷氨酸内向电流,这些电流均受 NR2B 特异性拮抗剂 ifenprodil 同等影响。形态重建显示,YFP(+)和 YFP(-)CRc 的树突和轴突参数相似,而 YFP(+)CRc 的树突区稍大。总之,在本研究中,YFP(+)和 YFP(-)CRc 之间在功能和形态特性方面没有明显差异。这些观察结果表明,不同起源的 CRc 在出生后早期皮层中表现出相似的功能特性,因此在发育皮层的短暂神经元网络中发挥相似的功能。

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