International audienceTransient cerebral ischemia causes an inhomogeneous pattern of cell death in the brain. We investigated mechanisms, which may underlie the greater susceptibility of hippocampal CA1 vs. CA3 pyramidal cells to ischemic insult. Using an in vitro oxygen-glucose deprivation (OGD) model of ischemia, we found that N-methyl-D-aspartate (NMDA) responses were enhanced in the more susceptible CA1 pyramidal cells and transiently depressed in the resistant CA3 pyramidal cells. The long-lasting potentiation of NMDA responses in CA1 cells was associated with delayed cell death and was prevented by blocking tyrosine kinase-dependent up-regulation of NMDA receptor function. In CA3 cells, the energy deprivation-induced transient depress...
Brain insults, including cerebral ischemia, can alter glutamate receptor subunit expression in vulne...
Brain insults, including cerebral ischemia, can alter glutamate receptor subunit expression in vulne...
SummaryAcid-sensing ion channels (ASICs) composed of ASIC1a subunit exhibit a high Ca2+ permeability...
Transient cerebral ischemia causes an inhomogeneous pattern of cell death in the brain. We investiga...
C.E.G and P.B. contributed equally to this work.Transient cerebral ischemia causes an inhomogeneous ...
International audienceTransient global ischemia induces delayed neuronal death in certain cell types...
International audienceNeuronal Ca2+ influx via NMDA receptors (NMDARs) is essential for the developm...
Excitotoxicity plays a central role in the neuronal damage during ischemic stroke. Although growing ...
International audienceOne of the most vulnerable areas to ischemia or hypoglycemia is CA1 hippocampa...
International audienceOne of the most vulnerable areas to ischemia or hypoglycemia is CA1 hippocampa...
International audienceOne of the most vulnerable areas to ischemia or hypoglycemia is CA1 hippocampa...
International audienceOne of the most vulnerable areas to ischemia or hypoglycemia is CA1 hippocampa...
Interruption in the brain's blood supply leads to an ischemic condition, which is characterised by a...
Calcium (Ca2+) influx through N-methyl-D-asparate receptors (NMDARs) is widely held to be the requis...
Sublethal ischemic challenges can protect neurons against a second, more severe hypoxic insult. We r...
Brain insults, including cerebral ischemia, can alter glutamate receptor subunit expression in vulne...
Brain insults, including cerebral ischemia, can alter glutamate receptor subunit expression in vulne...
SummaryAcid-sensing ion channels (ASICs) composed of ASIC1a subunit exhibit a high Ca2+ permeability...
Transient cerebral ischemia causes an inhomogeneous pattern of cell death in the brain. We investiga...
C.E.G and P.B. contributed equally to this work.Transient cerebral ischemia causes an inhomogeneous ...
International audienceTransient global ischemia induces delayed neuronal death in certain cell types...
International audienceNeuronal Ca2+ influx via NMDA receptors (NMDARs) is essential for the developm...
Excitotoxicity plays a central role in the neuronal damage during ischemic stroke. Although growing ...
International audienceOne of the most vulnerable areas to ischemia or hypoglycemia is CA1 hippocampa...
International audienceOne of the most vulnerable areas to ischemia or hypoglycemia is CA1 hippocampa...
International audienceOne of the most vulnerable areas to ischemia or hypoglycemia is CA1 hippocampa...
International audienceOne of the most vulnerable areas to ischemia or hypoglycemia is CA1 hippocampa...
Interruption in the brain's blood supply leads to an ischemic condition, which is characterised by a...
Calcium (Ca2+) influx through N-methyl-D-asparate receptors (NMDARs) is widely held to be the requis...
Sublethal ischemic challenges can protect neurons against a second, more severe hypoxic insult. We r...
Brain insults, including cerebral ischemia, can alter glutamate receptor subunit expression in vulne...
Brain insults, including cerebral ischemia, can alter glutamate receptor subunit expression in vulne...
SummaryAcid-sensing ion channels (ASICs) composed of ASIC1a subunit exhibit a high Ca2+ permeability...