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Lena, I.

Publications and source records attributed to Lena, I..

2 recordsLinked to original sources

Neurodevelopmental defects in Dravet syndrome Scn1a+/- mice: selective rescue of behavioral alterations but not seizures by targeting GABA-switch.

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, selectively 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.

neuroscience↗

Gender-specific behavioral features of juvenile and adult haploinsufficient Scn2a+/- female mice, model of Autism Spectrum Disorder

Variants of the SCN2A gene, encoding the NaV1.2 sodium channel, cause a spectrum of neurodevelopmental and epileptic disorders, and are among those that show the strongest association with Autism Spectrum Disorder (ASD). ASD has a male-bias prevalence, but several studies have proposed that female prevalence may be underestimated due to different symptomatic expression compared with males. However, it is unclear whether this is related to actual different pathological features or to greater masking abilities in females. Studies on Scn2a+/- mice, a model of SCN2A haploinsufficiency and ASD, have shown an age-dependent ASD-like phenotype attenuated at adulthood in males. However, little is known about the behavioral features of Scn2a+/- female mice. We performed a battery of behavioral tests that are relevant for assessing ASD-like features, investigating juvenile and adult Scn2a+/- female mice. Our results demonstrate that female Scn2a+/- mice exhibit an overall milder phenotype than males, showing increased sociability and increased risk taking in juveniles, hyper-reactivity to cold stimuli in adults, altered decision-making related behaviors in both. Thus, this is consistent with the male-bias prevalence of ASD and the existence of different ASD phenotypic features in males and females. Both genders should be investigated in studies of mouse models of ASD.

neuroscience↗