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Method to remove photoreceptors from whole mount retina in vitro.

Authors :
Walston, Steven T.
Yao-Chuan Chang
Weiland, James D.
Chow, Robert H.
Source :
Journal of Neurophysiology. Nov2017, Vol. 118 Issue 5, p2763-2769. 7p. 2 Color Photographs, 1 Black and White Photograph, 1 Diagram, 2 Graphs.
Publication Year :
2017

Abstract

Patch clamp recordings of neurons in the inner nuclear layer of the retina are difficult to conduct in a whole mount retina preparation because surrounding neurons block the path of the patch pipette. Vertical slice preparations or dissociated retinal cells provide access to bipolar cells at the cost of severing the lateral connection between neurons. We have developed a technique to remove photoreceptors from the rodent retina that exposes inner nuclear layer neurons, allowing access for patch clamp recording. Repeated application to and removal of filter paper from the photo-receptor side of an isolated retina effectively and efficiently removes photoreceptor cells and, in degenerate retina, hypertrophied Müller cell end feet. Live-dead assays applied to neurons remaining after photoreceptor removal demonstrated mostly viable cells. Patch clamp recordings from bipolar cells reveal responses similar to those recorded in traditional slice and dissociated cell preparations. An advantage of the photoreceptor peel technique is that it exposes inner retinal neurons in a whole mount retina preparation for investigation of signal processing. A disadvantage is that photoreceptor removal alters input to remaining retinal neurons. The technique may be useful for investigations of extracellular electrical stimulation, photoreceptor DNA analysis, and nonpharmacological removal of light input. NEW & NOTEWORTHY This study reports a method for removing photoreceptors from rodent whole mount retina while preserving the architecture of the inner retina. The method enables easier access to the inner retina for studies of neural processing, such as by patch clamp recording. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00223077
Volume :
118
Issue :
5
Database :
Academic Search Index
Journal :
Journal of Neurophysiology
Publication Type :
Academic Journal
Accession number :
159345421
Full Text :
https://doi.org/10.1152/jn.00578.2017