Genetic Neonatal-Onset Epilepsies and Developmental/Epileptic Encephalopathies with Movement Disorders: A Systematic
Carlotta Spagnoli1, Carlo Fusco1, Antonio Percesepe2
1Child Neurology Unit, AUSL-IRCCS di Reggio Emilia, 42122 Reggio Emilia, Italy.
Insights
This study identifies 28 genes causing neonatal-onset epilepsy and movement disorders, highlighting complex neurological phenotypes and the need for better early diagnosis in infants.
Area of Science:
- Neurology
- Genetics
- Pediatrics
Background:
- Monogenic conditions linking epilepsy and movement disorders (MD) are increasingly recognized, yet less studied in neonates than infants.
- Complex neurologic phenotypes, including developmental/epileptic encephalopathies (DE/EE) and MD, require further investigation, especially in early life.
Purpose of the Study:
- To review and report on monogenic conditions with neonatal onset of epilepsy and/or DE/EE and associated MD.
- To describe the electroclinical, genetic, and neuroimaging characteristics of these rare neonatal neurological disorders.
Main Methods:
- Systematic literature review (2000-2020) adhering to PRISMA guidelines.
- Data collection using a predefined protocol with specific inclusion/exclusion criteria.
- Analysis of identified genes, seizure types, MD characteristics, and neuroimaging findings.
Main Results:
- Identified 28 genes associated with neonatal-onset DE/EE and MD, predominantly hyperkinetic MD (89%) with neonatal onset in 22%.
- Common seizure types included tonic, myoclonic, and focal motor seizures.
- High rates of neurodevelopmental disorders and microcephaly were observed; brain MRI findings were often nonspecific.
Conclusions:
- Significant genetic heterogeneity exists for neonatal-onset DE/EE with MD, often presenting complex neurological phenotypes.
- Accurate neonatal epileptic phenotyping and detailed MD semiology are crucial for diagnosing and managing these rare conditions.
- Further research is needed to elucidate the full spectrum and long-term outcomes of these genetic neurological disorders.
Abstract:
Despite expanding next generation sequencing technologies and increasing clinical interest into complex neurologic phenotypes associating epilepsies and developmental/epileptic encephalopathies (DE/EE) with movement disorders (MD), these monogenic conditions have been less extensively investigated in the neonatal period compared to infancy. We reviewed the medical literature in the study period 2000-2020 to report on monogenic conditions characterized by neonatal onset epilepsy and/or DE/EE and development of an MD, and described their electroclinical, genetic and neuroimaging spectra. In accordance with a PRISMA statement, we created a data collection sheet and a protocol specifying inclusion and exclusion criteria. A total of 28 different genes (from 49 papers) leading to neonatal-onset DE/EE with multiple seizure types, mainly featuring tonic and myoclonic, but also focal motor seizures and a hyperkinetic MD in 89% of conditions, with neonatal onset in 22%, were identified. Neonatal seizure semiology, or MD age of onset, were not always available. The rate of hypokinetic MD was low, and was described from the neonatal period only, with WW domain containing oxidoreductase (WWOX) pathogenic variants. The outcome is characterized by high rates of associated neurodevelopmental disorders and microcephaly. Brain MRI findings are either normal or nonspecific in most conditions, but serial imaging can be necessary in order to detect progressive abnormalities. We found high genetic heterogeneity and low numbers of described patients. Neurological phenotypes are complex, reflecting the involvement of genes necessary for early brain development. Future studies should focus on accurate neonatal epileptic phenotyping, and detailed description of semiology and time-course, of the associated MD, especially for the rarest conditions.
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