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An instance of sleep-related hypermotor epilepsy that is caused by an inherited genomic modification in an individual.
No HPO annotations are available for this condition.
Age of onset: childhood.
KCNT1-related epilepsy encompasses a range of epilepsy syndromes. The most common phenotypes reported in individuals with KCNT1-related epilepsy are epilepsy of infancy with migrating focal seizures (EIMFS) and autosomal dominant nocturnal frontal lobe epilepsy (ADNFLE).
No formal diagnostic criteria for KCNT1-related epilepsy have been published to date. KCNT1-related epilepsy is most often associated with two phenotypes: epilepsy of infancy with migrating focal seizures (EIMFS) and autosomal dominant nocturnal frontal lobe epilepsy (ADNFLE). Less often, KCNT1 pathogenic variants are associated with epilepsy with variable presentation.
KCNT1-related epilepsy of infancy with migrating focal seizures (EIMFS) should be suspected in individuals with the following history and findings:
No approved treatments are currently available for familial sleep-related hypermotor epilepsy. The disease remains an area of unmet medical need.
To establish the extent of disease and needs in an individual diagnosed with KCNT1-related epilepsy, the evaluations summarized in this section (if not performed as part of the evaluation that led to the diagnosis) are recommended:
EEG is recommended at intervals determined by seizure frequency and progression, for evaluation of new involuntary movements or unexplained, paroxysmal changes in vital signs, or following adjustments to an anticonvulsant regimen. Developmental evaluation and initiation of therapies is recommended at time of diagnosis if not already begun. Following initial EKG and echocardiogram, there is no indication to repeat cardiac monitoring or cardiopulmonary imaging unless clinically indicated or following initiation of quinidine therapy.
Source:
No clinical trials have been registered for familial sleep-related hypermotor epilepsy.
5 publications have been identified in PubMed for familial sleep-related hypermotor epilepsy. Research spans Review / Meta-Analysis (60%) and Case Report / Case Series (40%).
Makhmetov S (2025). [PMID: 39834405](https://pubmed.ncbi.nlm.nih.gov/39834405/). *Heliyon*. [Case Report / Case Series]
Bisulli F (2025). [PMID: 40085429](https://pubmed.ncbi.nlm.nih.gov/40085429/). *Epilepsia*. [Review / Meta-Analysis]
Gokce-Samar Z (2025). [PMID: 40261684](https://pubmed.ncbi.nlm.nih.gov/40261684/). *Epilepsia*. [Case Report / Case Series]
Fotedar N (2024). [PMID: 39046177](https://pubmed.ncbi.nlm.nih.gov/39046177/). *Epilepsia*. [Review / Meta-Analysis]
Yang Y (2024). [PMID: 38966089](https://pubmed.ncbi.nlm.nih.gov/38966089/). *Front Neurol*. [Review / Meta-Analysis]
Data assembled from 3 of 12 sources · Last updated Sep 20, 2026, 6:23 PM UTC
Source: GeneReviews — "KCNT1-Related Epilepsy"
Phenotypic and EEG features associated with KCNT1 pathogenic variants are not sufficient to diagnose KCNT1-related epilepsy. All genes known to be associated with early-infantile epileptic encephalopathy (30 have been identified; see OMIM Phenotypic Series) should be included in the differential diagnosis of KCNT1-related epilepsy including other genes less commonly associated with epilepsy of infancy with migrating focal seizures (SCN1A, SCN2A, SLC12A5, SLC25A22, TBC1D24, PLCB1) and autosomal dominant nocturnal frontal lobe epilepsy (CHRNA4, CHRNB2, DEPDC5, CRH). Note: At seizure onset, it is most important to distinguish KCNT1-related epilepsy from potentially treatable causes of early infantile-onset epileptic encephalopathy, such as neurometabolic disorders, CNS infection, structural brain lesions, and other syndromes . Table 2. Treatable Disorders Associated with Early Infantile-Onset Epileptic Encephalopathy
Conditions | Gene(s) | MOI | Clinical Findings | Treatment |
|---|---|---|---|---|
ALDH7A1 | AR | plasma urine alpha-aminoadipic semialdehyde; plasma CSF pipecolic acid | Seizures/encephalopathy responsive to pyridoxine Pyridoxamine 5'-phosphate oxidase deficiency (OMIM 610090) | — |
PNPO | AR | Lactic acidemia; Hypoglycemia | Seizures/encephalopathy responsive to pyridoxal 5-prime phosphate Biotinidase deficiency | — |
BTD | AR | Deficient biotinidase enzyme activity in serum or plasma; Ketolactic acidosis, organic aciduria, hyperammonemia; Skin rash, alopecia, recurrent viral or fungal infections | Lifelong biotin supplementation Glucose transporter 1 deficiency syndrome | — |
SLC2A1 | ADAR | CSF glucose concentration; Absence seizures beginning age 3 | Ketogenic diet Creatine deficiency syndromes | GAMT GATM |
SLC6A8 | ARXL | Cerebral creatine deficiency on brain MR spectroscopy; Suggestive ratio of guanidinoacetate, creatine, /or creatinine in plasma urine | Creatine monohydrate supplementation Holocarboxylase synthetase deficiency (OMIM 253270) | — |
HLCS | AR | Ketolactic acidosis, organic aciduria, hyperammonemia; Skin rash, alopecia | Responsive to biotin Serine biosynthesis disorders | PHGDH PSAT1 |
PSPH | AR | Congenital or acquired microcephaly, congenital cataracts | L-serine glycine supplementation can reduce seizures, improve psychomotor symptoms, prevent progression depending on subtype | — |
Other | Infection of the CNS | NA | — | — |
MRI, blood culture /or lumbar puncture suggestive of infection | Antibiotic, antiviral, or antifungal therapy Structural brain lesions | NA | (Multi)focal lesions on brain MRI | Tuberous sclerosis complex |
Source: GeneReviews — "KCNT1-Related Epilepsy"
Evaluation by a movement disorder specialist if dictated by clinical presentation
Consideration of echocardiogram to evaluate for pulmonary collaterals
Electrocardiogram (EKG) to evaluate for cardiac rhythm abnormalities
Cognitive and behavioral assessment
Physical, occupational, and speech therapy evaluation
Consultation with a clinical geneticist and/or genetic counselor
Seizures. KCNT1-related epilepsy is often refractory to conventional anticonvulsants.
Source: GeneReviews — "KCNT1-Related Epilepsy"
View trials for familial sleep-related hypermotor epilepsy