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Neurodevelopmental defects in Dravet syndrome Scn1a+/- mice: targeting GABA-switch rescues behavioral dysfunctions but not seizures and mortality

Articolo
Data di Pubblicazione:
2025
Citazione:
Neurodevelopmental defects in Dravet syndrome Scn1a+/- mice: targeting GABA-switch rescues behavioral dysfunctions but not seizures and mortality / L. Pizzamiglio, F. Capitano, E. Rusina, G. Fossati, E. Menna, I. Léna, F. Antonucci, M. Mantegazza.. - In: NEUROBIOLOGY OF DISEASE. - ISSN 0969-9961. - 207:(2025 Apr), pp. 106853.1-106853.17. [10.1016/j.nbd.2025.106853]
Abstract:
Dravet syndrome (DS) is a developmental and epileptic encephalopathy (DEE) caused by mutations of the SCN1A gene (NaV1.1 sodium channel) and characterized by seizures, motor disabilities and cognitive/behavioral deficits, including autistic traits. The relative role of seizures and neurodevelopmental defects in disease progression, as well as the role of the mutation in inducing early neurodevelopmental defects before symptoms' onset, are not clear yet. A delayed switch of GABAergic transmission from excitatory to inhibitory (GABA-switch) was reported in models of DS, but its effects on the phenotype have not been investigated. Using a multi-scale approach, here we show that targeting GABA-switch with the drugs KU55933 (KU) or bumetanide (which upregulate KCC2 or inhibits NKCC1 chloride transporters, respectively) rescues social interaction deficits and reduces hyperactivity observed in P21 Scn1a+/− DS mouse model. Bumetanide also improves spatial working memory defects. Importantly, neither KU nor bumetanide have effect on seizures or mortality rate. Also, we disclose early behavioral defects and delayed neurodevelopmental milestones well before seizure onset, at the beginning of NaV1.1 expression. We thus reveal that neurodevelopmental components in DS, in particular GABA switch, underlie some cognitive/behavioral defects, but not seizures. Our work provides further evidence that seizures and neuropsychiatric dysfunctions in DEEs can be uncoupled and can have differential pathological mechanisms. They could be treated separately with targeted pharmacological strategies.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
developmental and epileptic encephalopathy; GABA; epilepsy; autism; Nav1.1; sodium channel
Elenco autori:
L. Pizzamiglio, F. Capitano, E. Rusina, G. Fossati, E. Menna, I. Léna, F. Antonucci, M. Mantegazza.
Autori di Ateneo:
ANTONUCCI FLAVIA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1164820
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1164820/3070499/Pizzamiglio%20et%20al,%20Neurobiology%20of%20Disease%202025.pdf
Progetto:
New insights into physiology of aged-related cognitive disorders: unexpected role of DNA repair proteins ATM and ATR
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Settori (2)


Settore BIOS-06/A - Fisiologia

Settore BIOS-11/A - Farmacologia
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Realizzato con VIVO | Progettato da Cineca | 25.11.5.0