Selective Na<sub>V</sub>1.1 activation rescues Dravet syndrome mice from seizures and premature death.

Richards, Kay L; Milligan, Carol J; Richardson, Robert J; Jancovski, Nikola; Grunnet, Morten; Jacobson, Laura H; Undheim, Eivind A B; Mobli, Mehdi et al. · Proc Natl Acad Sci U S A · 2018

basic_science · Level V

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Abstract

Dravet syndrome is a catastrophic, pharmacoresistant epileptic encephalopathy. Disease onset occurs in the first year of life, followed by developmental delay with cognitive and behavioral dysfunction and substantially elevated risk of premature death. The majority of affected individuals harbor a loss-of-function mutation in one allele of <i>SCN1A</i>, which encodes the voltage-gated sodium channel Na<sub>V</sub>1.1. Brain Na<sub>V</sub>1.1 is primarily localized to fast-spiking inhibitory interneurons; thus the mechanism of epileptogenesis in Dravet syndrome is hypothesized to be reduced inhibitory neurotransmission leading to brain hyperexcitability. We show that selective activation of Na<sub>V</sub>1.1 by venom peptide Hm1a restores the function of inhibitory interneurons from Dravet syndrome mice without affecting the firing of excitatory neurons. Intracerebroventricular infusion of Hm1a rescues Dravet syndrome mice from seizures and premature death. This precision medicine approach, which specifically targets the molecular deficit in Dravet syndrome, presents an opportunity for treatment of this intractable epilepsy.

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