Key result
A characteristic ictal aEEG pattern was present in 92.3% (12 of 13) of neonates with SCN2A- and KCNQ3-related epilepsy, distinguishing them from neonates with other causes of seizures.
Why the study?
Early recognition of neonatal seizures from potassium or sodium channel variants is crucial because they resist common anti-seizure medications but respond to sodium channel blockers.
Does aEEG and cEEG evaluation identify characteristic patterns in neonates with SCN2A- and KCNQ3-related epilepsy compared to other causes of neonatal seizures?
Observational (n=185)
Yes
Does aEEG and cEEG evaluation identify characteristic patterns in neonates with SCN2A- and KCNQ3-related epilepsy compared to other causes of neonatal seizures?
Absolute Event Rate: 92.3% vs 0%
A characteristic aEEG pattern can facilitate early recognition of SCN2A- and KCNQ3-related epilepsy in neonates, allowing for prompt initiation of precision treatment with sodium channel blockers.
May aid recognition of SCN2A/KCNQ3-related neonatal seizures; extends KCNQ2 aEEG observations but leaves diagnostic utility open.
PURPOSE: Early recognition of seizures in neonates secondary to pathogenic variants in potassium or sodium channel coding genes is crucial, as these seizures are often resistant to commonly used anti-seizure medications but respond well to sodium channel blockers. Recently, a characteristic ictal amplitude-integrated electroencephalogram (aEEG) pattern was described in neonates with KCNQ2-related epilepsy. We report a similar aEEG pattern in seizures caused by SCN2A- and KCNQ3-pathogenic variants, as well as conventional EEG (cEEG) descriptions. METHODS: International multicentre descriptive study, reporting clinical characteristics, aEEG and cEEG findings of 13 neonates with seizures due to pathogenic SCN2A- and KCNQ3-variants. As a comparison group, aEEGs and cEEGs of neonates with seizures due to hypoxic-ischemic encephalopathy (n = 117) and other confirmed genetic causes affecting channel function (n = 55) were reviewed. RESULTS: In 12 out of 13 patients, the aEEG showed a characteristic sequence of brief onset with a decrease, followed by a quick rise, and then postictal amplitude attenuation. This pattern correlated with bilateral EEG onset attenuation, followed by rhythmic discharges ending in several seconds of post-ictal amplitude suppression. Apart from patients with KCNQ2-related epilepsy, none of the patients in the comparison groups had a similar aEEG or cEEG pattern. DISCUSSION: Seizures in SCN2A- and KCNQ3-related epilepsy in neonates can usually be recognized by a characteristic ictal aEEG pattern, previously reported only in KCNQ2-related epilepsy, extending this unique feature to other channelopathies. Awareness of this pattern facilitates the prompt initiation of precision treatment with sodium channel blockers even before genetic results are available.
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Pijpers et al. (2023) conducted an observational in SCN2A and KCNQ3-related epilepsy in neonates (n=185). Pathogenic SCN2A- and KCNQ3-variants vs. Hypoxic-ischemic encephalopathy and other genetic causes affecting channel function was evaluated on Characteristic ictal aEEG pattern. A characteristic ictal aEEG pattern was present in 92.3% (12 of 13) of neonates with SCN2A- and KCNQ3-related epilepsy, distinguishing them from neonates with other causes of seizures.
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