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1.
Seizure ; 117: 206-212, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38479206

ABSTRACT

PURPOSE: Early childhood epilepsy presents a significant challenge, with approximately 30 % of individuals experiencing treatment failure. This study aimed to identify predictors of medical intractability in children with epilepsy onset during the first two years of life, excluding infantile epileptic spasm syndrome. METHODS: A total of 323 children were retrospectively evaluated. The analyses included a review of medical records for demographic, laboratory, radiological, and electroencephalographic (EEG) findings. Children were diagnosed with drug-resistant epilepsy (DRE) according to the ILAE diagnostic criteria. Twenty-one potential prognostic predictors were examined in relation to medical intractability. RESULTS: Among the 323 children (56.7 % male), 119 (36.8 %) had unknown epilepsy, 131 (40.6 %) had structural epilepsy, 53 (16.4 %) had genetic epilepsy, and 20 (6.2 %) had metabolic epilepsy. Over a median follow-up of 68 months, 55.4 % of the children achieved ≥6 months of seizure freedom, 33.1 % developed DRE, and the remaining 11.5 % had rare ongoing seizures but did not meet the criteria for DRE because they were only treated with one antiseizure medication at the last follow-up. Univariate logistic regression analyses identified ten risk factors significantly associated with DRE. Multivariate logistic regression analyses revealed that the presence of developmental delay at epilepsy onset (p = 0.000; OR 7.890; 95 %CI 2.713 to 22.945), history of status epilepticus (p = 0.000; OR 8.247; 95 %CI 3.619 to 18.793), number of antiseizure medications (ASMs) at the sixth month of diagnosis (p = 0.000; OR 20.585; 95 %CI 8.993 to 47.117), and initial EEG findings (p = 0.046; OR 2.366; 95 %CI 1.015 to 5.518) were predictors of medical intractability. Nineteen (5.9 %) children died during follow-up for various reasons, including progressive neurogenetic or neurodegenerative disorders. CONCLUSION: Developmental delay at epilepsy onset, a history of status epilepticus, the use of two or more ASMs in the sixth month of diagnosis, and abnormal initial EEG findings were associated with medical intractability.


Subject(s)
Anticonvulsants , Drug Resistant Epilepsy , Electroencephalography , Humans , Male , Female , Infant , Retrospective Studies , Child, Preschool , Drug Resistant Epilepsy/physiopathology , Drug Resistant Epilepsy/diagnosis , Anticonvulsants/therapeutic use , Epilepsy/diagnosis , Epilepsy/physiopathology , Epilepsy/complications , Follow-Up Studies , Prognosis , Risk Factors
2.
Clin Neurol Neurosurg ; 230: 107772, 2023 07.
Article in English | MEDLINE | ID: mdl-37167844

ABSTRACT

Asparagine synthetase deficiency (ASNSD) is a rare autosomal recessive neurometabolic disorder caused by homozygous or compound heterozygous mutations in the ASNS gene. Most of the patients have early-onset intractable seizures. A 7-year-old boy was first admitted to our clinic with intractable febrile and afebrile seizures that started when he was 6 months old. He had axial hypotonia with spastic quadriparesis, mild facial dysmorphism, and acquired microcephaly at 1 year-old. Metabolic tests showed a borderline-low serum asparagine level. The electroencephalogram demonstrated epileptic discharges with a high incidence of multifocal spike-wave activity. Brain MRI showed mild cerebral atrophy. His seizures continued despite combinations of multiple antiseizure agents. Whole-exome sequencing (WES) revealed a novel compound heterozygous missense variant of the ASNS gene, and the variants were confirmed by Sanger sequencing. He was started on a ketogenic diet at five years and six months of age. In the first month of the ketogenic diet, we observed that the frequency of seizures significantly decreased. He showed a remarkable improvement in seizures and milder improvement in cognitive skills. To our knowledge, our case is the first report describing significant improvement with a ketogenic diet in intractable seizures due to ASNSD.


Subject(s)
Aspartate-Ammonia Ligase , Diet, Ketogenic , Drug Resistant Epilepsy , Epilepsy , Intellectual Disability , Microcephaly , Neurodegenerative Diseases , Male , Humans , Child , Infant , Microcephaly/complications , Microcephaly/genetics , Aspartate-Ammonia Ligase/genetics , Epilepsy/drug therapy , Epilepsy/genetics , Seizures/genetics , Drug Resistant Epilepsy/drug therapy , Drug Resistant Epilepsy/genetics , Intellectual Disability/genetics , Atrophy
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