Respiratory Alkalosis Provokes Spike-Wave Discharges in Seizure-Prone Rats

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Abstract

Hyperventilation reliably provokes seizures in patients diagnosed with absence epilepsy. Despite this predictable patient response, the mechanisms that enable hyperventilation to powerfully activate absence seizure-generating circuits remain entirely unknown. By utilizing gas exchange manipulations and optogenetics in the WAG/Rij rat, an established rodent model of absence epilepsy, we demonstrate that absence seizures are highly sensitive to arterial carbon dioxide, suggesting that seizure-generating circuits are sensitive to pH. Moreover, hyperventilation consistently activated neurons within the intralaminar nuclei of the thalamus, a structure implicated in seizure generation. We show that intralaminar thalamus also contains pH-sensitive neurons. Collectively, these observations suggest that hyperventilation activates pH-sensitive neurons of the intralaminar nuclei to provoke absence seizures.

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Salvati, K. A., Souza, G. M. P. R., Lu, A. C., Ritger, M. L., Guyenet, P. G., Abbott, S. B., & Beenhakker, M. P. (2022). Respiratory Alkalosis Provokes Spike-Wave Discharges in Seizure-Prone Rats. ELife, 11. https://doi.org/10.7554/eLife.72898

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