AbstractWe tested the pathogenic role of O−2 radicals in excitotoxic injury. Inactivation of the TCA cycle enzyme, aconitase, was used as a marker of intracellular O−2 levels, and a porphyrin SOD mimetic was used to scavenge O−2. The selective, reversible, and SOD-sensitive inactivation of aconitase by known O−2 generators was used to validate aconitase activity as a marker of O−2 generation. Treatment of rat cortical cultures with NMDA, KA, or the intracellular O−2 generator PQ2+ produced a selective and reversible inactivation of aconitase, which closely correlated with subsequent cell death produced by these agents. The SOD mimetic, but not its less active congener, attenuated both aconitase inactivation and cell death produced by NMDA, ...
Sustained activation of neuronal N-methly D-aspartate (NMDA)-type glutamate receptors leads to excit...
AbstractExcitotoxicity in brain ischemia triggers neuronal death and neurological disability, and ye...
BACKGROUND:Mitochondrial oxidative stress is a contributing factor in the etiology of numerous neuro...
AbstractWe tested the pathogenic role of O−2 radicals in excitotoxic injury. Inactivation of the TCA...
Excitotoxicity is classically attributed to Ca2+ influx through NMDA receptors (NMDAr), leading to p...
Oxidative stress and excitotoxicity have been implicated in selective striatal vulnerability caused ...
Excitotoxic neuronal death is mediated in part by NMDA receptor-induced activation of NOX2, an enzym...
Excitotoxicity is implicated in the pathogenesis of several neurologic diseases, such as chronic neu...
In recent years we have witnessed a major interest in the study of the role of mitochondria, not onl...
Sustained activation of N-methyl-d-aspartate (NMDA) -type glutamate receptors leads to excitotoxic n...
AbstractSympathetic neurons in culture die by apoptosis when deprived of nerve growth factor (NGF). ...
AbstractPrevious works of our group demonstrated that xenobiotic metabolism by brain microsomes or c...
Excitotoxic neuronal cell death is characterized by an overactivation of glutamate receptors, in par...
Sustained activation of neuronal N-methly D-aspartate (NMDA)-type glutamate receptors leads to excit...
Excitotoxicity, a critical process in neurodegeneration, induces oxidative stress and neuronal death...
Sustained activation of neuronal N-methly D-aspartate (NMDA)-type glutamate receptors leads to excit...
AbstractExcitotoxicity in brain ischemia triggers neuronal death and neurological disability, and ye...
BACKGROUND:Mitochondrial oxidative stress is a contributing factor in the etiology of numerous neuro...
AbstractWe tested the pathogenic role of O−2 radicals in excitotoxic injury. Inactivation of the TCA...
Excitotoxicity is classically attributed to Ca2+ influx through NMDA receptors (NMDAr), leading to p...
Oxidative stress and excitotoxicity have been implicated in selective striatal vulnerability caused ...
Excitotoxic neuronal death is mediated in part by NMDA receptor-induced activation of NOX2, an enzym...
Excitotoxicity is implicated in the pathogenesis of several neurologic diseases, such as chronic neu...
In recent years we have witnessed a major interest in the study of the role of mitochondria, not onl...
Sustained activation of N-methyl-d-aspartate (NMDA) -type glutamate receptors leads to excitotoxic n...
AbstractSympathetic neurons in culture die by apoptosis when deprived of nerve growth factor (NGF). ...
AbstractPrevious works of our group demonstrated that xenobiotic metabolism by brain microsomes or c...
Excitotoxic neuronal cell death is characterized by an overactivation of glutamate receptors, in par...
Sustained activation of neuronal N-methly D-aspartate (NMDA)-type glutamate receptors leads to excit...
Excitotoxicity, a critical process in neurodegeneration, induces oxidative stress and neuronal death...
Sustained activation of neuronal N-methly D-aspartate (NMDA)-type glutamate receptors leads to excit...
AbstractExcitotoxicity in brain ischemia triggers neuronal death and neurological disability, and ye...
BACKGROUND:Mitochondrial oxidative stress is a contributing factor in the etiology of numerous neuro...