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Brain malformation and infantile spasms in a SCAD deficiency patient
Mohamad A Mikati1, Hala R Chaaban, Pascal E Karam
1Department of Pediatrics, American University of Beirut Medical Center, Beirut, Lebanon. mamikati@aub.edu.lb <mamikati@aub.edu.lb>
Insights
Short-chain acyl-coenzyme A dehydrogenase deficiency can present with brain malformations and infantile spasms. This rare combination highlights the need to consider this metabolic disorder in diagnosing neurological abnormalities.
Area of Science:
- Biochemistry
- Neurology
- Genetics
Background:
- Short-chain acyl-coenzyme A dehydrogenase (SCAD) deficiency is an inherited metabolic disorder.
- It typically affects fatty acid oxidation, leading to various clinical manifestations.
Observation:
- A female infant presented with infantile spasms and seizures at 3.5 months old.
- Electroencephalography confirmed hypsarrhythmia and infantile spasms.
- MRI revealed brain malformations including a meningocele, abnormal cortical gyration, and partial agenesis of the corpus callosum.
Findings:
- Metabolic evaluation showed ethylmalonic acidemia.
- Enzymatic assay confirmed low short-chain acyl-coenzyme A dehydrogenase activity.
- This case represents the first reported instance of SCAD deficiency coexisting with infantile spasms and brain malformations.
Implications:
- SCAD deficiency should be considered in the differential diagnosis of infantile spasms.
- This case expands the phenotypic spectrum of SCAD deficiency to include significant brain malformations.
- Early diagnosis and management of SCAD deficiency are crucial for affected infants.
Abstract:
This report presents a case of short-chain acyl-coenzyme A (CoA) dehydrogenase deficiency with a previously unreported presentation with brain malformations and infantile spasms. This female infant developed repeated tonic clonic seizures at the age of 3(1/2) months. She subsequently developed West syndrome at the age of 4 months. Her electroencephalogram disclosed hypsarrhythmia, and video-electroencephalographic monitoring confirmed the presence of infantile spasms. Magnetic resonance imaging revealed a small midline frontal meningocele, abnormal cortical gyration, and partial agenesis of the corpus callosum consistent with neuronal migrational disorder. Metabolic evaluation indicated ethylmalonic acidemia. Muscle biopsy with enzymatic assay of short-chain acyl-coenzyme A revealed low enzymatic activity confirming the diagnosis of short-chain acyl-coenzyme A dehydrogenase deficiency. To our knowledge, this is the first report of the coexistence of short-chain acyl-coenzyme A dehydrogenase deficiency, infantile spasms, and brain malformation. We conclude that short-chain acyl-coenzyme A dehydrogenase deficiency should be considered in the differential diagnosis of gyral abnormality, corpus callosal hypoplasia, and infantile spasms.
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