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SCN8A Mutation in Infantile Epileptic Encephalopathy: Report of Two Cases
Kanij Fatema1, Md Mizanur Rahman1, Omar Faruk1
1Department of Pediatric Neurology, Bangabandhu Sheikh Mujib Medical University, Dhaka, Bangladesh.
Insights
Early infantile epileptic encephalopathy type 13, caused by SCN8A gene mutations, presents severe epilepsy. Genetic testing aids early detection and targeted treatment for infants with intractable epilepsy and developmental delay.
Area of Science:
- Genetics
- Neuroscience
- Pediatric Neurology
Background:
- Early infantile epileptic encephalopathy type 13 (EIEE13) is a severe epilepsy syndrome.
- It is caused by mutations in the sodium channel 8 alpha (SCN8A) gene, crucial for neuronal excitability.
Observation:
- Two cases of EIEE13 are presented, both with a mutation in the SCN8A gene (p.Arg1872Gln).
- Case 1: 14-month-old boy with normal development until 6 months, followed by intractable generalized seizures, neuroregression, and dystonia.
- Case 2: 11-month-old boy with developmental delay from onset, intractable generalized seizures starting at 7 months, and focal EEG discharges.
Findings:
- Both patients had SCN8A mutations identified via targeted next-generation sequencing.
- Electroencephalogram (EEG) findings included progressive background abnormality with burst suppression (Case 1) and focal discharges (Case 2).
- Partial response to antiepileptic drugs (carbamazepine and oxcarbazepine) was observed in both cases.
Implications:
- These cases highlight the importance of genetic testing for infants presenting with intractable epilepsy, movement disorders, and developmental delay.
- Understanding SCN8A encephalopathy contributes to earlier diagnosis and more targeted therapeutic strategies.
- Further research into SCN8A mutations can improve management of severe early-onset epilepsy.
Abstract:
Early infantile epileptic encephalopathy type 13 is a severe form of epilepsy caused by mutations in the sodium channel 8 alpha (SCN8A) gene. This gene encodes the neuronal voltage-gated sodium channel which plays vital role in neuronal excitability. Here we present two cases with SCN8A encephalopathy. Both cases had mutation in p.Arg1872Gin the SCN8A gene, which was detected by targeted next generation sequencing. Case 1 was a 14-month old boy, who had a normal birth history with normal development up to 6 months and then developed repeated generalized seizure, which was nonresponsive to multiple antiepileptic drugs. He also had neuroregression and dystonia. His electroencephalogram (EEG) showed progressive background abnormality with burst suppression pattern. His metabolic panel was normal and had partial response to carbamazepine. The second case was for an 11-month old boy with the onset of seizure at the age of 7 months. Seizure was generalized, resistant to multiple antiepileptic drugs. He had developmental delay from beginning, no movement disorder. EEG showed focal discharge from left temporal and occipital region. He showed partial response to oxcarbazepine. Our cases had similarities with the previously reported cases. The detailed discussion of our cases would contribute to early detection and targeted treatment of SCN8A encephalopathy. This also gives special emphasis on a genetic test in infants with intractable epilepsy, movement disorder and developmental delay.
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