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Text
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URL Address
<a href="http://doi.org/10.1016/0304-3940(93)90167-j" target="_blank" rel="noreferrer noopener">http://doi.org/10.1016/0304-3940(93)90167-j</a>
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Pages
43-46
Issue
1
Volume
154
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Title
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DEVELOPMENTAL ALTERATIONS IN N-METHYL-D-ASPARTATE STIMULATED H-3 NOREPINEPHRINE RELEASE IN RAT-BRAIN CORTEX AND HIPPOCAMPUS
Publisher
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Neuroscience Letters
Date
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1993
1993-05
Subject
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hippocampus; cortex; development; receptors; Neurosciences & Neurology; system; ethanol; postnatal-development; cerebral-cortex; visual cortex; excitatory amino-acids; [h-3]norepinephrine release; n-methyl-d-aspartate; nmda-binding-sites; norepinephrine release; slice
Creator
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Brown L M
Description
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Developmental alterations in N-methyl-D-aspartate (NMDA)-stimulated [H-3]norepinephrine release from rat brain cortical and hippocampal slices were studied. NMDA (10-1000 muM) resulted in a concentration-dependent increase in [H-3]norepinephrine efflux; maximal responses (% released) in the cortex were: (1.53 +/- 0. 12, 3.68 +/- 0.20, 2.94 +/- 0.20, 4.60 +/- 0.28 and 5.28 +/- 0.33) and the hippocampal responses were: (1.90 +/- 0.18, 3.84 +/- 0.23, 3.60 +/- 0.28, 5.16 +/- 0.38 and 5.81 +/- 0.45) at varying postnatal ages (1, 7, 14, 21 and 90 days) respectively. Cortical tissue from 7-day-old pups exhibited a transient increase in maximal efflux and a decrease in EC50. These results indicated that developmental alterations in the NMDA receptor appear to be translated into differences in NMDA stimulated [H-3]norepinephrine release.
Identifier
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<a href="http://doi.org/10.1016/0304-3940(93)90167-j" target="_blank" rel="noreferrer noopener">10.1016/0304-3940(93)90167-j</a>
Format
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Journal Article or Conference Abstract Publication
[h-3]norepinephrine release
1993
Brown L M
cerebral-cortex
cortex
development
ETHANOL
excitatory amino-acids
Hippocampus
Journal Article or Conference Abstract Publication
N-Methyl-D-Aspartate
Neuroscience letters
Neurosciences & Neurology
nmda-binding-sites
norepinephrine release
postnatal-development
Receptors
slice
system
visual cortex