A Novel Tool to Measure Extracellular Glutamate in the Zebrafish Nervous System In Vivo

RB MacDonald, ND Kashikar, L Lagnado, WA Harris - Zebrafish, 2017 - liebertpub.com
Zebrafish, 2017liebertpub.com
Glutamate is the major excitatory neurotransmitter in the brain. Its release and eventual
recycling are key to rapid sustained neural activity. We have paired the gfap promoter region
with the glutamate reporter molecule, iGluSnFR, to drive expression in glial cells throughout
the nervous system. Tg (gfap: iGluSnFR) is expressed on the glial membrane of Müller glia
cells in the retina, which rapidly respond to stimulation and the release of extracellular
glutamate. As glial cells are associated with most, if not all, synapses, Tg (gfap: iGluSnFR) is …
Abstract
Glutamate is the major excitatory neurotransmitter in the brain. Its release and eventual recycling are key to rapid sustained neural activity. We have paired the gfap promoter region with the glutamate reporter molecule, iGluSnFR, to drive expression in glial cells throughout the nervous system. Tg(gfap:iGluSnFR) is expressed on the glial membrane of Müller glia cells in the retina, which rapidly respond to stimulation and the release of extracellular glutamate. As glial cells are associated with most, if not all, synapses, Tg(gfap:iGluSnFR) is a novel and exciting tool to measure neuronal activity and extracellular glutamate dynamics in many regions of the nervous system.
Mary Ann Liebert
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