Evidence map›Paper›PMID 42048301›Full record

ArticleThe American journal of case reports2026

A 4-Year-Old Bahraini Girl With Developmental Delay and Epilepsy of Infancy With Migrating Focal Seizures Associated With KCNT1 Gene Mutation.

Noora Ebrahim AlHadi, Hessa Mohammed Albuainain, Raafat Hammad Jadah

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Article in The American journal of case reports, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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3 authors.

Noora Ebrahim AlHadiDepartment of Pediatrics, Bahrain Defence Force Hospital, Riffa, Bahrain.ORCID 0009-0006-9426-9167
Hessa Mohammed AlbuainainDepartment of Pediatrics, Bahrain Defence Force Hospital, Riffa, Bahrain.
Raafat Hammad JadahDepartment of Pediatric Neurology, Bahrain Defence Force Hospital, Riffa, Bahrain.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

BACKGROUND Potassium sodium-activated channel subfamily T member 1 (KCNT1)-related developmental and epileptic encephalopathy (DEE) is a rare and serious neurological condition attributed to damaging alterations in the KCNT1 gene, which encodes a sodium-activated potassium channel involved in neuronal excitability. It typically manifests in infancy with drug-resistant seizures, developmental delay, and hypotonia. Diagnosis is determined using whole-exome sequencing. Although KCNT1-related epilepsy is considered as a rare disorder, reporting such individual cases may help broaden the clinical and genetic spectrum of this condition. This report describes a Bahraini girl who first presented with symptoms at 2 weeks of age and at the time of this report was 4 years old, with developmental delay and epilepsy of infancy with migrating focal seizures (EIMFS), and early-onset DEE, associated with KCNT1 gene mutation. CASE REPORT A previously healthy term female baby presented at 2 weeks of age with focal seizures that progressed to intractable migrating focal epilepsy. At 4 months, she developed developmental regression, losing the ability to roll over, social-smile, and make eye contact. Neurological examination revealed central hypotonia with poor visual interaction. Electroencephalogram (EEG) showed multifocal epileptiform discharges with migrating seizure activity. Brain magnetic resonance imaging (MRI) and metabolic investigations were normal. Whole-exome sequencing identified a heterozygous KCNT1 variant, confirming developmental and epileptic encephalopathy type 14 (DEE14). CONCLUSIONS This case highlights the importance of timely genetic testing in infants showing severe epilepsy and developmental issues. To better understand the phenotypic variability and clinical course of KCNT1-related epileptic encephalopathy, more case reports are required. Identifying a KCNT1 mutation provides diagnostic clarity, supports precise prognosis and genetic counseling, and may help evaluate future targeted treatments.

Indexed as

Developmental DisabilitiesEpilepsies, PartialMutationNerve Tissue ProteinsPotassium Channels, Sodium-ActivatedSeizuresChild, PreschoolElectroencephalographyFemaleHumansKCNT1 protein, humanNerve Tissue ProteinsPotassium Channels, Sodium-Activated

Identifiers

PMID42048301
PMCPMC13135302

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