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Antioxidative and Proapoptotic Effects of Riluzole on Cultured CorticalNeurons
Authors:Jae-Young Koh  Dae-Kyong Kim  Jee Yeon Hwang  Yang Hee Kim  Ji Heui Seo
Affiliation:National Creative Research Initiative Center for the Study of CNS Zinc and Department of Neurology, Ulsan University School of Medicine; Department of Environmental and Health Chemistry, College of Pharmacy, Chung-Ang University; Department of Molecular Biology, Seoul National University, Seoul, Korea
Abstract:Abstract : Riluzole is used clinically in patients with amyotrophic lateral sclerosis. As oxidative stress, in addition to excitotoxicity, may be a major mechanism of motoneuron degeneration in patients with amyotrophic lateral sclerosis, we examined whether riluzole protects against nonexcitotoxic oxidative injury. Probably reflecting its weak antiexcitotoxic effects, riluzole (1-30 μ M ) attenuated submaximal neuronal death induced by 24-h exposure to 30 μ M kainate or NMDA, but not that by 100 μ M NMDA, in cortical cultures. Riluzole also attenuated nonexcitotoxic oxidative injury induced by exposure to FeCl3 in the presence of MK-801 and CNQX. Consistent with its antioxidative effects, riluzole reduced Fe3+-induced lipid peroxidation, and inhibited cytosolic phospholipase A2. By contrast, riluzole did not attenuate neuronal apoptosis induced by staurosporine. Rather unexpectedly, 24-48-h exposure to 100-300 μ M riluzole induced neuronal death accompanied by nuclear and DNA fragmentations, which was attenuated by caspase inhibitor carbobenzyloxy-Val-Ala-Asp-fluoromethyl ketone but not by protein synthesis inhibitor cycloheximide. The present study demonstrates that riluzole has direct antioxidative actions, perhaps in part by inhibiting phospholipase A2. However, in the same neurons, riluzole paradoxically induces neuronal apoptosis in a caspase-sensitive manner. Considering current clinical use of riluzole, further studies are warranted to investigate its potential cytolethal effects.
Keywords:Amyotrophic lateral sclerosis    Neuronal death    Phospholipase A2    Arachidonic acid    Caspase
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