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When should clinicians search for GLUT1 deficiency syndrome in childhood generalized epilepsies?
Sébastien Lebon1, Philippe Suarez2, Semsa Alija2
1Pediatric Neurology and Neurorehabilitation Unit, Department of Pediatrics, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland.
Insights
Glucose transporter type 1 deficiency syndrome (GLUT1DS) is a treatable cause of childhood epilepsy. Investigating GLUT1DS is most beneficial for patients with myoclonic-atonic seizures and early-onset absence epilepsy.
Area of Science:
- Neurology
- Genetics
- Metabolic Disorders
Background:
- Glucose transporter type 1 deficiency syndrome (GLUT1DS) is an increasingly recognized cause of generalized epilepsies in children.
- Early diagnosis is critical as GLUT1DS is a treatable condition.
Purpose of the Study:
- To determine the diagnostic yield of SLC2A1 mutation analysis in children with generalized epilepsies.
- To identify clinical features that increase the likelihood of GLUT1DS.
Main Methods:
- SLC2A1 gene sequencing was performed in 93 children with generalized epilepsies.
- A systematic review of 7 publications was conducted to compare findings.
- Fasting lumbar puncture was performed after mutation identification.
Main Results:
- SLC2A1 mutations were identified in 2.1% of the studied cohort.
- Across 7 studies, 2.4% of 1110 patients with generalized epilepsies had GLUT1DS, with a higher rate (5.6%) in early-onset absence epilepsy.
- Clinical pointers included abnormal movements (50%) and a family history (41%).
Conclusions:
- GLUT1DS should be suspected in patients with myoclonic-atonic seizures and early-onset absence epilepsy.
- The diagnostic probability of GLUT1DS in classical idiopathic generalized epilepsies is low.
- Key indicators for GLUT1DS include increased seizures before meals, cognitive impairment, or paroxysmal exercise-induced dyskinesia.
Unlabelled:
GLUT1 deficiency (GLUT1D) has recently been identified as an important cause of generalized epilepsies in childhood. As it is a treatable condition, it is crucial to determine which patients should be investigated.
Methods:
We analyzed SLC2A1 for mutations in a group of 93 unrelated children with generalized epilepsies. Fasting lumbar puncture was performed following the identification of a mutation. We compared our results with a systematic review of 7 publications of series of patients with generalized epilepsies screened for SLC2A1 mutations.
Results:
We found 2/93 (2.1%) patients with a SLC2A1 mutation. One, carrying a novel de novo deletion had epilepsy with myoclonic-atonic seizures (MAE), mild slowing of head growth, choreiform movements and developmental delay. The other, with a paternally inherited missense mutation, had childhood absence epilepsy with atypical EEG features and paroxysmal exercise-induced dyskinesia (PED) initially misdiagnosed as myoclonic seizures. Out of a total of 1110 screened patients with generalized epilepsies from 7 studies, 2.4% (29/1110) had GLUT1D. This rate was higher (5.6%) among 303 patients with early onset absence epilepsy (EOAE) from 4 studies. About 50% of GLUT1D patients had abnormal movements and 41% a family history of seizures, abnormal movements or both.
Conclusion:
GLUT1D is most likely to be found in MAE and in EOAE. The probability of finding GLUT1D in the classical idiopathic generalized epilepsies is very low. Pointers to GLUT1D include an increase in seizures before meals, cognitive impairment, or PED which can easily be overlooked.
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