Publication | Open Access
Hypoxic neuronal necrosis: Protein synthesis-independent activation of a cell death program
88
Citations
30
References
2003
Year
Hypoxic Neuronal NecrosisMitophagyCell Death ProgramApoptosisCell DeathCellular PhysiologyOxidative StressNeuroinflammationInflammationHypoxic NecrosisAutophagyEarly Mitochondrial SwellingBrain InjuryNeurologyCell SignalingMitochondrial Membrane PotentialHealth SciencesHypoxia (Medicine)NeuroprotectionProtein Synthesis-independent ActivationCell BiologyMitochondrial FunctionNeurophysiologyPhysiologyNecrosisMedicine
Hypoxic necrosis of dentate gyrus neurons in primary culture required the activation of an orderly cell death program independent of protein synthesis. Early mitochondrial swelling and loss of the mitochondrial membrane potential were accompanied by release of cytochrome c and followed by caspase-9-dependent activation of caspase-3. Caspase-3 and -9 inhibitors reduced neuronal necrosis. Calcium directly induced cytochrome c release from isolated mitochondria. Hypoxic neuronal necrosis may be an active process in which the direct effect of hypoxia on mitochondria may lead to the final common pathway of caspase-3-mediated neuronal death.
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