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用于电生理研究的成年小鼠视网膜水平切片的制备

Preparation of Horizontal Slices of Adult Mouse Retina for Electrophysiological Studies.

作者信息

Feigenspan Andreas, Babai Norbert Zsolt

机构信息

Department of Biology, Friedrich-Alexander-University (FAU) Erlangen-Nürnberg;

Department of Biology, Friedrich-Alexander-University (FAU) Erlangen-Nürnberg.

出版信息

J Vis Exp. 2017 Jan 27(119):55173. doi: 10.3791/55173.

Abstract

Vertical slice preparations are well established to study circuitry and signal transmission in the adult mammalian retina. The plane of sectioning in these preparations is perpendicular to the retinal surface, making it ideal for the study of radially oriented neurons like photoreceptors and bipolar cells. However, the large dendritic arbors of horizontal cells, wide-field amacrine cells, and ganglion cells are mostly truncated, leaving markedly reduced synaptic activity in these cells. Whereas ganglion cells and displaced amacrine cells can be studied in a whole-mounted preparation of the retina, horizontal cells and amacrine cells located in the inner nuclear layer are only poorly accessible for electrodes in whole retina tissue. To achieve maximum accessibility and synaptic integrity, we developed a horizontal slice preparation of the mouse retina, and studied signal transmission at the synapse between photoreceptors and horizontal cells. Horizontal sectioning allows (1) easy and unambiguous visual identification of horizontal cell bodies for electrode targeting, and (2) preservation of the extended horizontal cell dendritic fields, as a prerequisite for intact and functional cone synaptic input to horizontal cell dendrites. Horizontal cells from horizontal slices exhibited tonic synaptic activity in the dark, and they responded to brief flashes of light with a reduction of inward current and diminished synaptic activity. Immunocytochemical evidence indicates that almost all cones within the dendritic field of a horizontal cell establish synapses with its peripheral dendrites. The horizontal slice preparation is therefore well suited to study the physiological properties of horizontally extended retinal neurons as well as sensory signal transmission and integration across selected synapses.

摘要

垂直切片制备方法在研究成年哺乳动物视网膜的神经回路和信号传递方面已得到广泛应用。这些制备物的切片平面垂直于视网膜表面,这使其成为研究诸如光感受器和双极细胞等径向排列神经元的理想选择。然而,水平细胞、广域无长突细胞和神经节细胞的大型树突分支大多被截断,导致这些细胞中的突触活动显著减少。虽然神经节细胞和移位无长突细胞可以在视网膜的整装标本中进行研究,但位于内核层的水平细胞和无长突细胞在整个视网膜组织中对于电极来说很难接触到。为了实现最大程度的可及性和突触完整性,我们开发了一种小鼠视网膜的水平切片制备方法,并研究了光感受器与水平细胞之间突触处的信号传递。水平切片允许:(1)轻松且明确地通过视觉识别水平细胞体以进行电极靶向,以及(2)保留扩展的水平细胞树突场,这是完整且功能性的视锥细胞突触输入到水平细胞树突的前提条件。来自水平切片的水平细胞在黑暗中表现出持续性突触活动,并且它们对短暂的闪光做出反应,表现为内向电流减少和突触活动减弱。免疫细胞化学证据表明,水平细胞树突场内几乎所有的视锥细胞都与其外周树突建立了突触。因此,水平切片制备方法非常适合研究水平延伸的视网膜神经元的生理特性以及跨选定突触的感觉信号传递和整合。

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