Combining membrane potential imaging with L-glutamate or GABA photorelease.

Combining membrane potential imaging using voltage sensitive dyes with photolysis of L-glutamate or GABA allows the monitoring of electrical activity elicited by the neurotransmitter at different sub-cellular sites. Here we describe a simple system and some basic experimental protocols to achieve th...

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Main Authors: Kaspar E Vogt, Stephan Gerharz, Jeremy Graham, Marco Canepari
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3191132?pdf=render
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spelling doaj-c06275a5b53f405db68ef8fdc2a59f852020-11-25T01:45:56ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-01610e2491110.1371/journal.pone.0024911Combining membrane potential imaging with L-glutamate or GABA photorelease.Kaspar E VogtStephan GerharzJeremy GrahamMarco CanepariCombining membrane potential imaging using voltage sensitive dyes with photolysis of L-glutamate or GABA allows the monitoring of electrical activity elicited by the neurotransmitter at different sub-cellular sites. Here we describe a simple system and some basic experimental protocols to achieve these measurements. We show how to apply the neurotransmitter and how to vary the dimension of the area of photolysis. We assess the localisation of photolysis and of the recorded membrane potential changes by depolarising the dendrites of cerebellar Purkinje neurons with L-glutamate photorelease using different experimental protocols. We further show in the apical dendrites of CA1 hippocampal pyramidal neurons how L-glutamate photorelease can be used to calibrate fluorescence changes from voltage sensitive dyes in terms of membrane potential changes (in mV) and how GABA photorelease can be used to investigate the phenomenon of shunting inhibition. We also show how GABA photorelease can be used to measure chloride-mediated changes of membrane potential under physiological conditions originating from different regions of a neuron, providing important information on the local intracellular chloride concentrations. The method and the proof of principle reported here open the gateway to a variety of important applications where the advantages of this approach are necessary.http://europepmc.org/articles/PMC3191132?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kaspar E Vogt
Stephan Gerharz
Jeremy Graham
Marco Canepari
spellingShingle Kaspar E Vogt
Stephan Gerharz
Jeremy Graham
Marco Canepari
Combining membrane potential imaging with L-glutamate or GABA photorelease.
PLoS ONE
author_facet Kaspar E Vogt
Stephan Gerharz
Jeremy Graham
Marco Canepari
author_sort Kaspar E Vogt
title Combining membrane potential imaging with L-glutamate or GABA photorelease.
title_short Combining membrane potential imaging with L-glutamate or GABA photorelease.
title_full Combining membrane potential imaging with L-glutamate or GABA photorelease.
title_fullStr Combining membrane potential imaging with L-glutamate or GABA photorelease.
title_full_unstemmed Combining membrane potential imaging with L-glutamate or GABA photorelease.
title_sort combining membrane potential imaging with l-glutamate or gaba photorelease.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Combining membrane potential imaging using voltage sensitive dyes with photolysis of L-glutamate or GABA allows the monitoring of electrical activity elicited by the neurotransmitter at different sub-cellular sites. Here we describe a simple system and some basic experimental protocols to achieve these measurements. We show how to apply the neurotransmitter and how to vary the dimension of the area of photolysis. We assess the localisation of photolysis and of the recorded membrane potential changes by depolarising the dendrites of cerebellar Purkinje neurons with L-glutamate photorelease using different experimental protocols. We further show in the apical dendrites of CA1 hippocampal pyramidal neurons how L-glutamate photorelease can be used to calibrate fluorescence changes from voltage sensitive dyes in terms of membrane potential changes (in mV) and how GABA photorelease can be used to investigate the phenomenon of shunting inhibition. We also show how GABA photorelease can be used to measure chloride-mediated changes of membrane potential under physiological conditions originating from different regions of a neuron, providing important information on the local intracellular chloride concentrations. The method and the proof of principle reported here open the gateway to a variety of important applications where the advantages of this approach are necessary.
url http://europepmc.org/articles/PMC3191132?pdf=render
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