Oxidative stress contributes to neuronal death in brain ischemia-reperfusion. Tissue levels of the endogenous antioxidant glutathione (GSH) are depleted during ischemia-reperfusion, but it is unknown whether this depletion is a cause or an effect of oxidative stress, and whether it occurs in neurons or other cell types. We used immunohistochemical methods to evaluate glutathione, superoxide, and oxidative stress in mouse hippocampal neurons after transient forebrain ischemia. GSH levels in CA1 pyramidal neurons were normally high relative to surrounding neuropil, and exhibited a time-dependent decrease during the first few hours of reperfusion. Colabeling for superoxide in the neurons showed a concurrent increase in detectable superoxide ov...
International audienceAfter an ischemic episode induced by the electrocoagulation of the left middle...
A redox-sensitive Grx1–roGFP2 fusion protein was introduced by transfection into single pyramidal ne...
Neuronal cell death in acute insults such as stroke, trauma and epilepsy involves overactivation of ...
Oxidative stress contributes to neuronal death in brain ischemia-reperfusion. Tissue levels of the e...
Neurodegenerative diseases are characterized by the progressive deterioration of neuronal function i...
The availability of the antioxidant glutathione (GSH) within astrocytes and neurones has been sugges...
A critical role of oxidative stress has been implicated in ischemic brain damage. Mild ischemic pret...
Neural damage caused by ischemia/stroke is initiated by excess reactive oxygen species (ROS). Differ...
Fructose-1,6-bisphosphate (FBP), an endogenous intermediate of glycolysis, protects the brain agains...
The PC12 and SH-SY5Y cell models have been proposed as potentially realistic models to investigate n...
Astrocytes promote the survival of neurons. Conditions characterized by loss of neurons, such as agi...
The status of glutathione (GSH) and protein thiol homeostasis was examined in rat brain regions duri...
The survival of cultured neurons is promoted by the presence of antioxidants or astrocytes. This ind...
The time course of oxidative damage in different brain regions was investigated in the gerbil model ...
In vivo studies support selective neuronal vulnerability to hypoxia-ischemia (HI) in the developing ...
International audienceAfter an ischemic episode induced by the electrocoagulation of the left middle...
A redox-sensitive Grx1–roGFP2 fusion protein was introduced by transfection into single pyramidal ne...
Neuronal cell death in acute insults such as stroke, trauma and epilepsy involves overactivation of ...
Oxidative stress contributes to neuronal death in brain ischemia-reperfusion. Tissue levels of the e...
Neurodegenerative diseases are characterized by the progressive deterioration of neuronal function i...
The availability of the antioxidant glutathione (GSH) within astrocytes and neurones has been sugges...
A critical role of oxidative stress has been implicated in ischemic brain damage. Mild ischemic pret...
Neural damage caused by ischemia/stroke is initiated by excess reactive oxygen species (ROS). Differ...
Fructose-1,6-bisphosphate (FBP), an endogenous intermediate of glycolysis, protects the brain agains...
The PC12 and SH-SY5Y cell models have been proposed as potentially realistic models to investigate n...
Astrocytes promote the survival of neurons. Conditions characterized by loss of neurons, such as agi...
The status of glutathione (GSH) and protein thiol homeostasis was examined in rat brain regions duri...
The survival of cultured neurons is promoted by the presence of antioxidants or astrocytes. This ind...
The time course of oxidative damage in different brain regions was investigated in the gerbil model ...
In vivo studies support selective neuronal vulnerability to hypoxia-ischemia (HI) in the developing ...
International audienceAfter an ischemic episode induced by the electrocoagulation of the left middle...
A redox-sensitive Grx1–roGFP2 fusion protein was introduced by transfection into single pyramidal ne...
Neuronal cell death in acute insults such as stroke, trauma and epilepsy involves overactivation of ...