TY - JOUR
T1 - Impaired glutamine metabolism in NMDA receptor hypofunction induced by MK801
AU - Brenner, Eiliv
AU - Kondziella, Daniel
AU - Håberg, Asta
AU - Sonnewald, Ursula
PY - 2005/9
Y1 - 2005/9
N2 - Paradoxically, glutamate receptor antagonists have neurotoxic and psychotogenic properties in addition to their neuroprotective potential during excessive glutamate release. In the present study the non-competitive N-methyl-D-aspartate (NMDA) receptor antagonist MK801 was used to examine glial-neuronal interactions in NMDA receptor hypofunction. Rats were given a subanesthetic dose of MK801 together with [1-13C]glucose and [1,2-13C]acetate, and brains were removed 20 min later. Analyses of extracts from cingulate, retrosplenial plus middle frontal cortices (CRFC) and temporal lobe were performed using HPLC and 13C and 1H nuclear magnetic resonance spectroscopy. Hypofunction of the NMDA receptor induced similar changes in both brain areas investigated; however, the changes were most pronounced in the temporal lobe. Generally, only labeling from [1-13C]glucose was affected by MK801. In CRFC and temporal lobe amounts of both labeled and unlabeled glutamine were increased, whereas those of aspartate were decreased. In the CRFC the decrease in labeling of aspartate was greater than the decrease in concentration, leading to decreased 13C enrichment. In temporal lobe, not in CRFC, increased concentrations of glutamate, GABA, succinate, glutathione and inositol were detected together with increased labeling of GABA and succinate from [1-13C]glucose. 13C Enrichment was decreased in glutamate and increased in succinate. The results point towards a disturbance in glutamate-glutamine cycling and thus interaction between neurons and glia, since labeling of glutamate and glutamine from glucose was affected differently.
AB - Paradoxically, glutamate receptor antagonists have neurotoxic and psychotogenic properties in addition to their neuroprotective potential during excessive glutamate release. In the present study the non-competitive N-methyl-D-aspartate (NMDA) receptor antagonist MK801 was used to examine glial-neuronal interactions in NMDA receptor hypofunction. Rats were given a subanesthetic dose of MK801 together with [1-13C]glucose and [1,2-13C]acetate, and brains were removed 20 min later. Analyses of extracts from cingulate, retrosplenial plus middle frontal cortices (CRFC) and temporal lobe were performed using HPLC and 13C and 1H nuclear magnetic resonance spectroscopy. Hypofunction of the NMDA receptor induced similar changes in both brain areas investigated; however, the changes were most pronounced in the temporal lobe. Generally, only labeling from [1-13C]glucose was affected by MK801. In CRFC and temporal lobe amounts of both labeled and unlabeled glutamine were increased, whereas those of aspartate were decreased. In the CRFC the decrease in labeling of aspartate was greater than the decrease in concentration, leading to decreased 13C enrichment. In temporal lobe, not in CRFC, increased concentrations of glutamate, GABA, succinate, glutathione and inositol were detected together with increased labeling of GABA and succinate from [1-13C]glucose. 13C Enrichment was decreased in glutamate and increased in succinate. The results point towards a disturbance in glutamate-glutamine cycling and thus interaction between neurons and glia, since labeling of glutamate and glutamine from glucose was affected differently.
KW - Animals
KW - Aspartic Acid/metabolism
KW - Brain/drug effects
KW - Cell Communication/drug effects
KW - Dizocilpine Maleate/pharmacology
KW - Down-Regulation/drug effects
KW - Energy Metabolism/drug effects
KW - Excitatory Amino Acid Antagonists/pharmacology
KW - Frontal Lobe/drug effects
KW - Glucose/metabolism
KW - Glutamic Acid/metabolism
KW - Glutamine/metabolism
KW - Glutathione/metabolism
KW - Inositol/metabolism
KW - Male
KW - Neuroglia/drug effects
KW - Neurons/drug effects
KW - Rats
KW - Rats, Sprague-Dawley
KW - Receptors, N-Methyl-D-Aspartate/drug effects
KW - Succinic Acid/metabolism
KW - Temporal Lobe/drug effects
KW - Up-Regulation/drug effects
KW - gamma-Aminobutyric Acid/metabolism
U2 - 10.1111/j.1471-4159.2005.03311.x
DO - 10.1111/j.1471-4159.2005.03311.x
M3 - Journal article
C2 - 16045441
SN - 0022-3042
VL - 94
SP - 1594
EP - 1603
JO - Journal of Neurochemistry
JF - Journal of Neurochemistry
IS - 6
ER -