Neurotoxic profiles of putative agonists for low-affinity kainate subtypes of Image -glutamate receptors (GluR5-7) were determined in cultured cortical neurones. Rank order of neurotoxic potency (μM): (S)-5-iodowillardiine (9)≈(2S,4R,6E)-2-amino-4-carboxy-7-(2-naphthyl)hept-6-enoic acid (LY339434, 11)>(2S,4R)-4-methylglutamate (33)>kainate (100)>(RS)-2-amino-3-(hydroxy-5-tert-butylisoxazol-4-yl)propanoic acid (ATPA, 360). Using ionotropic glutamate receptor antagonists, neurotoxicity induced by kainate, ATPA and (S)-5-iodowillardiine appeared to involve a GluR5-7 component, unlike LY339434 and (2S,4R)-4-methylglutamate. These putative GluR5-7 agonists exhibited complex excitotoxic profiles highlighting the importance of studying native glut...
Multiple sclerosis is an inflammatory disease of the CNS leading to the destruction of oligodendrocy...
Kainic acid is an excitotoxin in mammalian brain. Here the mechanisms underlying the physiological ...
Oligodendroglia play an important role in axonal conduction in the CNS and are sensitive to oxidativ...
The characteristics of the kainic acid (KA) subtype of ionotropic receptor for L-glutamate (GluR) ar...
The neurotoxic profile of (2S,4R,6E)-2-amino-4-carboxy-7-(2-naphthyl)hept-6-enoic acid (LY339434), a...
The effect of various selective glutamate agonists upon the rate of generation of reactive oxygen sp...
Excitotoxicity is considered to be an important mechanism involved in various neurodegenerative dise...
AbstractAlthough both protein and mRNAs for kainate receptor subunits are abundant in several brain ...
Glutamate receptors play a crucial role in the central nervous system and are implicated in differen...
We have studied the influence of class I metabotropic glutamate receptors (mGluRs) on excitotoxic ne...
The methylglutamate analog (2S,4R)-4-methylglutamate (SYM 2081) has been shown to potently displace ...
Glutamate receptors are key mediators of brain communication. Among ionotropic gluta-mate receptors,...
Intracellular consequences of glutamate receptor activation were investigated in mouse hippocampal n...
AbstractMammalian brain expresses receptors which bind the potent neurotoxins, kainate and domoate, ...
Kainic acid is a potent neurotoxin for certain neurons. Its neurotoxicity is thought to be mediated ...
Multiple sclerosis is an inflammatory disease of the CNS leading to the destruction of oligodendrocy...
Kainic acid is an excitotoxin in mammalian brain. Here the mechanisms underlying the physiological ...
Oligodendroglia play an important role in axonal conduction in the CNS and are sensitive to oxidativ...
The characteristics of the kainic acid (KA) subtype of ionotropic receptor for L-glutamate (GluR) ar...
The neurotoxic profile of (2S,4R,6E)-2-amino-4-carboxy-7-(2-naphthyl)hept-6-enoic acid (LY339434), a...
The effect of various selective glutamate agonists upon the rate of generation of reactive oxygen sp...
Excitotoxicity is considered to be an important mechanism involved in various neurodegenerative dise...
AbstractAlthough both protein and mRNAs for kainate receptor subunits are abundant in several brain ...
Glutamate receptors play a crucial role in the central nervous system and are implicated in differen...
We have studied the influence of class I metabotropic glutamate receptors (mGluRs) on excitotoxic ne...
The methylglutamate analog (2S,4R)-4-methylglutamate (SYM 2081) has been shown to potently displace ...
Glutamate receptors are key mediators of brain communication. Among ionotropic gluta-mate receptors,...
Intracellular consequences of glutamate receptor activation were investigated in mouse hippocampal n...
AbstractMammalian brain expresses receptors which bind the potent neurotoxins, kainate and domoate, ...
Kainic acid is a potent neurotoxin for certain neurons. Its neurotoxicity is thought to be mediated ...
Multiple sclerosis is an inflammatory disease of the CNS leading to the destruction of oligodendrocy...
Kainic acid is an excitotoxin in mammalian brain. Here the mechanisms underlying the physiological ...
Oligodendroglia play an important role in axonal conduction in the CNS and are sensitive to oxidativ...