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Brief low [Mg<sup>2+</sup>]<sub>o</sub>-induced Ca<sup>2+</sup> spikes inhibit subsequent prolonged exposure-induced excitotoxicity in cultured rat hippocampal neurons

Brief low [Mg<sup>2+</sup>]<sub>o</sub>-induced Ca<sup>2+</sup> spikes inhibit subsequent prolonged exposure-induced excitotoxicity in cultured rat hippocampal neurons

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Reducing [Mg<sup>2+</sup>]<sub>o</sub> to 0.1 mM can evoke repetitive [Ca<sup>2+</sup>]<sub>i</sub> spikes and seizure activity, which induces neuronal cell death in a process called excitotoxicity. We examined the issue of whether cultured rat hippocampal neurons preconditioned by a brief exposure to 0.1 mM [Mg<sup>2+</sup>]<sub>o</sub> are rendered resistant to excitotoxicity induced by a subsequent prolonged exposure and whether Ca<sup>2+</sup> spikes are involved in this process. Preconditioning by an exposure to 0.1 mM [Mg<sup>2+</sup>]<sub>o</sub> for 5 min inhibited significantly subsequent 24 h exposure-induced cell death 24 h later (tolerance). Such tolerance was prevented by both the NMDA receptor antagonist D-AP5 and the L-type Ca<sup>2+</sup> channel antagonist nimodipine, which blocked 0.1 mM [Mg<sup>2+</sup>]<sub>o</sub>-induced [Ca<sup>2+</sup>]<sub>i</sub> spikes. The AMPA receptor antagonist NBQX significantly inhibited both the tolerance and the [Ca<sup>2+</sup>]<sub>i</sub> spikes. The intracellular Ca<sup>2+</sup> chelator BAPTA-AM significantly prevented the tolerance. The nonspecific PKC inhibitor staurosporin inhibited the tolerance without affecting the [Ca<sup>2+</sup>]<sub>i</sub> spikes. While G&ouml;6976, a specific inhibitor of PKCα had no effect on the tolerance, both the PKCε translocation inhibitor and the PKCζ pseudosubstrate inhibitor significantly inhibited the tolerance without affecting the [Ca<sup>2+</sup>]<sub>i</sub> spikes. Furthermore, JAK-2 inhibitor AG490, MAPK kinase inhibitor PD98059, and CaMKII inhibitor KN-62 inhibited the tolerance, but PI-3 kinase inhibitor LY294,002 did not. The protein synthesis inhibitor cycloheximide significantly inhibited the tolerance. Collectively, these results suggest that low [Mg<sup>2+</sup>]<sub>o</sub> preconditioning induced excitotoxic tolerance was directly or indirectly mediated through the [Ca<sup>2+</sup>]<sub>i</sub> spike-induced activation of PKCε and PKCξ, JAK-2, MAPK kinase, CaMKII and the de novo synthesis of proteins.

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