4.7 Article

Seizure activity results in calcium- and mitochondria-independent ROS production via NADPH and xanthine oxidase activation

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CELL DEATH & DISEASE
卷 5, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/cddis.2014.390

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  1. Deutsche Forschungsgemeinschaft [KO-3878/1-1]
  2. Epilepsy Research UK
  3. FP7-HEALTH project [602102]
  4. Epilepsy Research UK [P1301] Funding Source: researchfish

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Seizure activity has been proposed to result in the generation of reactive oxygen species (ROS), which then contribute to seizure-induced neuronal damage and eventually cell death. Although the mechanisms of seizure-induced ROS generation are unclear, mitochondria and cellular calcium overload have been proposed to have a crucial role. We aim to determine the sources of seizure-induced ROS and their contribution to seizure-induced cell death. Using live cell imaging techniques in glioneuronal cultures, we show that prolonged seizure-like activity increases ROS production in an NMDA receptor-dependent manner. Unexpectedly, however, mitochondria did not contribute to ROS production during seizure-like activity. ROS were generated primarily by NADPH oxidase and later by xanthine oxidase (XO) activity in a calcium-independent manner. This calcium-independent neuronal ROS production was accompanied by an increase in intracellular [Na+] through NMDA receptor activation. Inhibition of NADPH or XO markedly reduced seizure-like activity-induced neuronal apoptosis. These findings demonstrate a critical role for ROS in seizure-induced neuronal cell death and identify novel therapeutic targets.

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