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PMID: 8627331 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

On the origin of extracellular glutamate levels monitored in the basal ganglia of the rat by in vivo microdialysis.

Journal of neurochemistry ·Vol. 66 ·No. 4 ·1996-04-00 ·Pages 1726-35

Herrera-Marschitz M, You ZB, Goiny M, Meana JJ, Silveira R, Godukhin OV, Chen Y, Espinoza S, Pettersson E, Loidl CF, Lubec G, Andersson K, Nylander I, Terenius L, Ungerstedt U

Abstract

Several putative neurotransmitters and metabolites were monitored simultaneously in the extracellular space of neostriatum, substantia nigra, and cortex and in subcutaneous tissue of the rat by in vivo microdialysis. Glutamate (Glu) and aspartate (Asp) were at submicromolar and gamma-aminobutyric acid (GABA) was at nanomolar concentrations in all brain regions. The highest concentration of dopamine (DA) was in the neostriatum. Dynorphin B (Dyn B) was in the picomolar range in all brain regions. Although no GABA, DA, or Dyn B could be detected in subcutaneous tissue, Glu and Asp levels were 5 and approximately 5 and approximately 0.4 microM, respectively. Lactate and pyruvate concentrations were approximately 200 and approximately 10 microM in all regions. The following criteria were applied to ascertain the neuronal origin of substances quantified by microdialysis: sensitivity to (a) K+ depolarization, (b) Na+ channel blockade, (c) removal of extracellular Ca2+, and (d) depletion of presynaptic vesicles by local administration of alpha-latrotoxin. DA, Dyn B, and GABA largely satisfied all these criteria. In contrast, Glu and Asp levels were not greatly affected by K+ depolarization and were increased by perfusing with tetrodotoxin or with Ca2+-free medium, arguing against a neuronal origin. However, Glu and Asp, as well as DA and GABA, levels were decreased under both basal and K+-depolarizing conditions by alpha-latrotoxin. Because the effect of K+ depolarization on Glu and Asp could be masked by reuptake into nerve terminals and glial cells, the reuptake blocker dihydrokainic acid (DHKA) or L-trans-pyrrolidine-2,4-dicarboxylic acid (PDC) was included in the microdialysis perfusion medium. The effect of K+ depolarization on Glu and Asp levels was increased by DHKA, but GABA levels were also affected. In contrast, PDC increased only Glu levels. It is concluded that there is pool of releasable Glu and Asp in the rat brain. However, extracellular levels of amino acids monitored by in vivo microdialysis reflect the balance between neuronal release and reuptake into surrounding nerve terminals and glial elements.

MeSH Terms
Amino Acids/analysis Anesthetics, Inhalation/pharmacology Anesthetics, Intravenous/pharmacology Animals Aspartic Acid/analysis Basal Ganglia/chemistry Calcium/pharmacology Cerebral Cortex/chemistry Dicarboxylic Acids/pharmacology Glutamic Acid/analysis Halothane/pharmacology Kainic Acid/analogs & derivatives,pharmacology Male Membrane Potentials/drug effects Microdialysis Neurotransmitter Agents/analysis Neurotransmitter Uptake Inhibitors/pharmacology Potassium/pharmacology Presynaptic Terminals/chemistry,drug effects Pyrrolidines/pharmacology Rats Rats, Sprague-Dawley Sodium Channel Blockers Spider Venoms/pharmacology Substantia Nigra/chemistry Tetrodotoxin/pharmacology Urethane/pharmacology
Chemicals
Amino Acids Anesthetics, Inhalation Anesthetics, Intravenous Dicarboxylic Acids Neurotransmitter Agents Neurotransmitter Uptake Inhibitors Pyrrolidines Sodium Channel Blockers Spider Venoms Aspartic Acid Urethane Glutamic Acid Tetrodotoxin dihydrokainic acid alpha-latrotoxin pyrrolidine-2,4-dicarboxylic acid Potassium Kainic Acid Calcium Halothane
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Herrera-Marschitz M
Department of Physiology, Karolinska Institute, Stockholm, Sweden.
You Z B
Goiny M
Meana J J
Silveira R
Godukhin O V
Chen Y
Espinoza S
Pettersson E
Loidl C F
Lubec G
Andersson K
Nylander I
Terenius L
Ungerstedt U
Article Info
Journal
Journal of neurochemistry
Abbr.
J Neurochem
ISSN
0022-3042
Published
1996-04-00
Pages
1726-35
Language
English
Region
England
NLM ID
2985190R
Subset
IM
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