In immature rodent brain, unilateral intrastriatal injections of selected excitatory amino acid (EAA) receptor agonists, such as N-methyl--aspartate (NMDA), produce prominent ipsilateral forebrain lesions. In Postnatal Day (PND) 7 rats that receive a right intrastriatal injection of NMDA (25 nmol) and are sacrificed 5 days later, there is a considerable and consistent reduction in the weight of the injected cerebral hemisphere relative to that of the contralateral side (-28.5 +/- 1.9%, n = 6). In animals treated with specific NMDA receptor antagonists, the severity of NMDA-induced damage is markedly reduced. We have previously reported that the efficacy of potential neuroprotective drugs in limiting NMDA-induced lesions can be assessed quan...
BACKGROUND AND PURPOSE: Cerebral white matter is as sensitive as gray matter to ischemic injury and ...
The purpose of this study was to investigate neuroprotective efficiency of N-methyl D-aspartate (NMD...
Inappropriate activation of NMDA receptors during a period of cerebral ischaemia is a crucial event ...
In postnatal day 7 rats, a unilateral intrastriatal injection of 12.5 nmol of (NMDA) reproducibly i...
Intrastriatal injection of the glutamate analogue N-methyl-D-aspartate (NMDA, 25 nmol), in postnatal...
In immature rodent brain, the glutamate receptor agonist N -methyl-D-aspartate (NMDA) is a potent ne...
Three non-competitive antagonists (MK-801, TCP, PCP) and one competitive antagonist (CPP) of (NMDA)...
Excitotoxic neuronal death induced by intracerebral injection of NMDA is a widely used model for inv...
Background: Exposure to NMDA glutamate antagonists during the brain growth spurt period causes wides...
Ischaemic brain damage, due to cerebrovascular disease ("stroke"), head injury, cardiac arrest, surg...
We explored the therapeutic potentials of two N-methyl-D-aspartate (NMDA) receptor antagonists in vi...
To examine the roles of glycine in neurotoxicity caused by NMDA, primary rat cortical cultures were ...
The neuroprotective effects of the strychnine-insensitive glycine receptor antagonist, HA-966, again...
Background: Flupirtine (FP) is found to antagonize both glutamate and N methyl, D aspartate (NMDA) a...
Excessive stimulation of NMDA receptors with glutamate or other potent agonists such as NMDA leads t...
BACKGROUND AND PURPOSE: Cerebral white matter is as sensitive as gray matter to ischemic injury and ...
The purpose of this study was to investigate neuroprotective efficiency of N-methyl D-aspartate (NMD...
Inappropriate activation of NMDA receptors during a period of cerebral ischaemia is a crucial event ...
In postnatal day 7 rats, a unilateral intrastriatal injection of 12.5 nmol of (NMDA) reproducibly i...
Intrastriatal injection of the glutamate analogue N-methyl-D-aspartate (NMDA, 25 nmol), in postnatal...
In immature rodent brain, the glutamate receptor agonist N -methyl-D-aspartate (NMDA) is a potent ne...
Three non-competitive antagonists (MK-801, TCP, PCP) and one competitive antagonist (CPP) of (NMDA)...
Excitotoxic neuronal death induced by intracerebral injection of NMDA is a widely used model for inv...
Background: Exposure to NMDA glutamate antagonists during the brain growth spurt period causes wides...
Ischaemic brain damage, due to cerebrovascular disease ("stroke"), head injury, cardiac arrest, surg...
We explored the therapeutic potentials of two N-methyl-D-aspartate (NMDA) receptor antagonists in vi...
To examine the roles of glycine in neurotoxicity caused by NMDA, primary rat cortical cultures were ...
The neuroprotective effects of the strychnine-insensitive glycine receptor antagonist, HA-966, again...
Background: Flupirtine (FP) is found to antagonize both glutamate and N methyl, D aspartate (NMDA) a...
Excessive stimulation of NMDA receptors with glutamate or other potent agonists such as NMDA leads t...
BACKGROUND AND PURPOSE: Cerebral white matter is as sensitive as gray matter to ischemic injury and ...
The purpose of this study was to investigate neuroprotective efficiency of N-methyl D-aspartate (NMD...
Inappropriate activation of NMDA receptors during a period of cerebral ischaemia is a crucial event ...