Systemic hyperglycemia and hypercapnia severely aggravate ischemic brain damage when instituted prior to cerebral ischemia. An aberrant cell signaling following ischemia has been proposed to be involved in ischemic cell death, affecting protein kinase C (PKC) and the calcium calmodulin kinase II (CaMKII). Using a cardiac arrest model of global brain ischemia of 10 min duration, we investigated the effect of hyperglycemia (20 mM) and hypercapnia (pCO2 300 mmHg) on the subcellular redistribution of PKC (α, β, γ) and CaMKII to synaptic membranes and to the microsomes, as well as the effect on PKC activity. We confirmed the marked translocation of PKC and CaMKII to cell membranes induced by ischemia, concomitantly with a decrease in the PKC act...
A brief period of sublethal ischemia in the brain induces resistance to a subsequent, otherwise leth...
Abstract: The influence of brain ischemia on the subcellular distribution and activity of Ca2+/calmo...
A variety of harmful stimuli, among them energy depletion occurring during transient brain ischemia...
The subcellular distribution of PKC(α) and PKC(γ) was studied in homogenates of cerebral cortex from...
The levels of protein kinase C-γ (PKC-γ) and the calcium/calmodulin-dependent kinase II-α (CaMKII-α)...
Neurons can be preconditioned against ischemic damage by a brief sublethal period of ischemia, appli...
The release of cytochrome c from the mitochondria following cerebral ischemia is a key event leading...
A brief period of sublethal ischemia induces resistance to a subsequent, otherwise lethal, ischemic ...
Blood–brain barrier disruption represents a key feature in hyperglycaemia-aggravated cerebral damage...
Several lines of evidence indicate that a rapid loss of protein kinase C (PKC) activity may be impor...
Abstract: The time course for the ischemia‐induced changes in the subcellular distribution of protei...
Abstract: The changes in the levels of protein kinase C [PKC(α, βII, γ)] were studied in cytosolic a...
One of the biochemical consequences of cerebral isch-emia is the activation of neuronal protein kina...
Transient cerebral ischemia following I to 2 hours of middle cerebral artery occlusion (MCAO) in the...
A major factor in secondary brain injury following cerebral trauma is accumulation of lactic acid re...
A brief period of sublethal ischemia in the brain induces resistance to a subsequent, otherwise leth...
Abstract: The influence of brain ischemia on the subcellular distribution and activity of Ca2+/calmo...
A variety of harmful stimuli, among them energy depletion occurring during transient brain ischemia...
The subcellular distribution of PKC(α) and PKC(γ) was studied in homogenates of cerebral cortex from...
The levels of protein kinase C-γ (PKC-γ) and the calcium/calmodulin-dependent kinase II-α (CaMKII-α)...
Neurons can be preconditioned against ischemic damage by a brief sublethal period of ischemia, appli...
The release of cytochrome c from the mitochondria following cerebral ischemia is a key event leading...
A brief period of sublethal ischemia induces resistance to a subsequent, otherwise lethal, ischemic ...
Blood–brain barrier disruption represents a key feature in hyperglycaemia-aggravated cerebral damage...
Several lines of evidence indicate that a rapid loss of protein kinase C (PKC) activity may be impor...
Abstract: The time course for the ischemia‐induced changes in the subcellular distribution of protei...
Abstract: The changes in the levels of protein kinase C [PKC(α, βII, γ)] were studied in cytosolic a...
One of the biochemical consequences of cerebral isch-emia is the activation of neuronal protein kina...
Transient cerebral ischemia following I to 2 hours of middle cerebral artery occlusion (MCAO) in the...
A major factor in secondary brain injury following cerebral trauma is accumulation of lactic acid re...
A brief period of sublethal ischemia in the brain induces resistance to a subsequent, otherwise leth...
Abstract: The influence of brain ischemia on the subcellular distribution and activity of Ca2+/calmo...
A variety of harmful stimuli, among them energy depletion occurring during transient brain ischemia...