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Reduced dendritic arborization and hyperexcitability of pyramidal neurons in a Scn1b-based model of Dravet syndrome

journal contribution
posted on 2024-11-02, 03:59 authored by Christopher Reid, Bryan Leaw, Kay Richards, Robert Richardson, Verena Wimmer, Christiaan Yu, Elisa HillElisa Hill, Holger Lerche, Ingrid Scheffer, Samuel Berkovic, Steven Petrou
Epileptic encephalopathies, including Dravet syndrome, are severe treatment-resistant epilepsies with developmental regression. We examined a mouse model based on a human β1 sodium channel subunit (Scn1b) mutation. Homozygous mutant mice shared phenotypic features and pharmaco-sensitivity with Dravet syndrome. Patch-clamp analysis showed that mutant subicular and layer 2/3 pyramidal neurons had increased action potential firing rates, presumably as a consequence of their increased input resistance. These changes were not seen in L5 or CA1 pyramidal neurons. This raised the concept of a regional seizure mechanism that was supported by data showing increased spontaneous synaptic activity in the subiculum but not CA1. Importantly, no changes in firing or synaptic properties of gamma-aminobutyric acidergic interneurons from mutant mice were observed, which is in contrast with Scn1a-based models of Dravet syndrome. Morphological analysis of subicular pyramidal neurons revealed reduced dendritic arborization. The antiepileptic drug retigabine, a K+ channel opener that reduces input resistance, dampened action potential firing and protected mutant mice from thermal seizures. These results suggest a novel mechanism of disease genesis in genetic epilepsy and demonstrate an effective mechanism-based treatment of the disease.

Funding

Understanding the neuronal mechanisms underlying inherited epilepsies

Australian Research Council

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History

Journal

Brain

Volume

137

Issue

6

Start page

1701

End page

1715

Total pages

15

Publisher

Oxford University Press

Place published

United Kingdom

Language

English

Copyright

© The Author 2014

Former Identifier

2006074248

Esploro creation date

2020-06-22

Fedora creation date

2017-08-01

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