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Published on: June 13, 2016
A 5-year-old boy with super-refractory status epilepticus and RANBP2 variant warranting life-saving hemispherotomy
Barbora Straka1, Miroslav Koblížek2, Barbora Splítková1
1Department of Paediatric Neurology, Motol University Hospital and Second Faculty of Medicine, Charles University, Prague, Czech Republic.
Insights
Focal cortical dysplasia (FCD) can cause severe epilepsy. A patient with rapid-onset, drug-resistant epilepsy was found to have a RANBP2 gene variant, potentially explaining their severe FCD phenotype.
Area of Science:
- Neuroscience
- Genetics
- Epilepsy Research
Background:
- Focal cortical dysplasia (FCD) is a leading cause of intractable epilepsy in pediatric and adult populations.
- The genetic underpinnings of severe FCD phenotypes, particularly those with rapid progression, remain largely unexplored.
- Understanding genetic contributions is crucial for developing targeted therapies for drug-resistant epilepsy.
Observation:
- A patient presented with an unusually rapid onset of drug-resistant epilepsy, escalating to super-refractory status epilepticus.
- Initial clinical, biochemical, and immunological assessments, including MRI, were unremarkable.
- Whole-exome sequencing identified a heterozygous RANBP2 gene variant (c.5233A>G) in the patient.
Findings:
- Brain biopsy confirmed Focal Cortical Dysplasia type IIa, necessitating an emergency hemispherotomy.
- The identified RANBP2 variant is associated with susceptibility to infection-induced acute necrotizing encephalopathy.
- Despite aggressive treatment, including anesthesia and respiratory support, seizures persisted until surgical intervention.
Implications:
- This case highlights a potential link between RANBP2 variants and exceptionally severe, rapidly progressing FCD.
- The findings suggest that genetic factors may significantly modify the clinical course and severity of FCD.
- Further research into RANBP2 and its role in neurological disorders could offer new therapeutic avenues for severe epilepsy.
Abstract:
Focal cortical dysplasia (FCD) represents the most common cause of drug-resistant epilepsy in adult and pediatric surgical series. However, genetic factors contributing to severe phenotypes of FCD remain unknown. We present a patient with an exceptionally rapid development of drug-resistant epilepsy evolving in super-refractory status epilepticus. We performed multiple clinical (serial EEG, MRI), biochemical (metabolic and immunological screening), genetic (WES from blood- and brain-derived DNA), and histopathological investigations. The patient presented 1 month after an uncomplicated varicella infection. MRI was negative, as well as other biochemical and immunological examinations. Whole-exome sequencing of blood-derived DNA detected a heterozygous paternally inherited variant NM_006267.4(RANBP2):c.5233A>G p.(Ile1745Val) (Chr2[GRCh37]:g.109382228A>G), a gene associated with a susceptibility to infection-induced acute necrotizing encephalopathy. No combination of anti-seizure medication led to a sustained seizure freedom and the patient warranted induction of propofol anesthesia with high-dose intravenous midazolam and continuous respiratory support that however failed to abort seizure activity. Brain biopsy revealed FCD type IIa; this finding led to the indication of an emergency right-sided hemispherotomy that rendered the patient temporarily seizure-free. Postsurgically, he remains on antiseizure medication and experiences rare nondisabling seizures. This report highlights a uniquely severe clinical course of FCD putatively modified by the RANBP2 variant. PLAIN LANGUAGE SUMMARY: We report a case summary of a patient who came to our attention for epilepsy that could not be controlled with medication. His clinical course progressed rapidly to life-threatening status epilepticus with other unusual neurological findings. Therefore, we decided to surgically remove a piece of brain tissue in order to clarify the diagnosis that showed features of a structural brain abnormality associated with severe epilepsy, the focal cortical dysplasia. Later, a genetic variant in a gene associated with another condition, was found, and we hypothesize that this genetic variant could have contributed to this severe clinical course of our patient.
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