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Epileptic Encephalopathy in Childhood: A Stepwise Approach for Identification of Underlying Genetic Causes
Jaina Patel1, Saadet Mercimek-Mahmutoglu2,3
1Division of Clinical and Metabolic Genetics, Department of Pediatrics, University of Toronto, The Hospital for Sick Children, 555 University Avenue, Toronto, Ontario, M5G 1X8, Canada.
Insights
Epileptic encephalopathy in children, characterized by seizures and developmental delay, may stem from treatable inherited metabolic disorders. Early metabolic and genetic investigations are crucial for timely diagnosis and improved neurodevelopmental outcomes.
Area of Science:
- Neurology
- Genetics
- Metabolic Disorders
Background:
- Epileptic encephalopathy is a common childhood neurological disorder.
- It is associated with global developmental delay and cognitive dysfunction.
- Some forms are treatable inherited metabolic disorders with specific therapies.
Purpose of the Study:
- To emphasize the importance of early metabolic and genetic investigations in children with epileptic encephalopathy.
- To highlight the diagnostic yield of various genetic testing modalities.
- To advocate for a stepwise diagnostic approach.
Main Methods:
- Review of recent studies utilizing array comparative genomic hybridization, targeted next-generation sequencing panels, whole exome, and whole genome sequencing.
- Discussion of a stepwise diagnostic work-up strategy.
- Emphasis on metabolic investigations as a first-line approach.
Main Results:
- Genetic testing shows a diagnostic yield of up to 70% in epileptic encephalopathy.
- Treatable inherited metabolic disorders can be identified through detailed investigations.
- A stepwise approach aids in rapid diagnosis.
Conclusions:
- Intractable epilepsy with global developmental delay warrants thorough metabolic and genetic work-up.
- Genetic insights into epileptic encephalopathy can guide treatment and prenatal diagnosis.
- Identifying underlying genetic causes is key to developing targeted neuroprotective strategies.
Abstract:
Epilepsy is one of the most common neurological disorders in childhood. Epilepsy associated with global developmental delay and cognitive dysfunction is defined as epileptic encephalopathy. Certain inherited metabolic disorders presenting with epileptic encephalopathy can be treated with disease specific diet, vitamin, amino acid or cofactor supplementations. In those disorders, disease specific therapy is successful to achieve good seizure control and improve long-term neurodevelopmental outcome. For this reason, intractable epilepsy with global developmental delay or history of developmental regression warrants detailed metabolic investigations for the possibility of an underlying treatable inherited metabolic disorder, which should be undertaken as first line investigations. An underlying genetic etiology in epileptic encephalopathy has been supported by recent studies such as array comparative genomic hybridization, targeted next generation sequencing panels, whole exome and whole genome sequencing. These studies report a diagnostic yield up to 70%, depending on the applied genetic testing as well as number of patients enrolled. In patients with epileptic encephalopathy, a stepwise approach for diagnostic work-up will help to diagnose treatable inherited metabolic disorders quickly. Application of detailed genetic investigations such as targeted next generation sequencing as second line and whole exome sequencing as third line testing will diagnose underlying genetic disease which will help for genetic counseling as well as guide for prenatal diagnosis. Knowledge of underlying genetic cause will provide novel insights into the pathogenesis of epileptic encephalopathy and pave the ground towards the development of targeted neuroprotective treatment strategies to improve the health outcome of children with epileptic encephalopathy.
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