Fatal Cerebral Edema With Status Epilepticus in Children With Dravet Syndrome: Report of 5 Cases

Author:

Myers Kenneth A.12,McMahon Jacinta M.1,Mandelstam Simone A.345,Mackay Mark T.56,Kalnins Renate M.7,Leventer Richard J.368,Scheffer Ingrid E.1356

Affiliation:

1. Epilepsy Research Centre, Department of Medicine and

2. Alberta Children’s Hospital, Cumming School of Medicine, Department of Pediatrics, Section of Neurology, University of Calgary, Calgary, Alberta, Canada;

3. Departments of Paediatrics and

4. Radiology, The University of Melbourne, Parkville, Victoria, Australia;

5. The Florey Institute of Neuroscience and Mental Health, Heidelberg, Victoria, Australia;

6. Department of Neurology, Royal Children’s Hospital, Parkville, Victoria, Australia; and

7. Department of Pathology, Austin Health, The University of Melbourne, Heidelberg, Victoria, Australia;

8. Murdoch Childrens Research Institute, Melbourne, Victoria, Australia

Abstract

Dravet syndrome (DS) is a well-recognized developmental and epileptic encephalopathy associated with SCN1A mutations and 15% mortality by 20 years. Although over half of cases succumb to sudden unexpected death in epilepsy, the cause of death in the remainder is poorly defined. We describe the clinical, radiologic, and pathologic characteristics of a cohort of children with DS and SCN1A mutations who developed fatal cerebral edema causing mass effect after fever-associated status epilepticus. Cases were identified from a review of children with DS enrolled in the Epilepsy Genetics Research Program at The University of Melbourne, Austin Health, who died after fever-associated status epilepticus. Five children were identified, all of whom presented with fever-associated convulsive status epilepticus, developed severe brain swelling, and died. All had de novo SCN1A mutations. Fever of 40°C or greater was measured in all cases. Signs of brainstem dysfunction, indicating cerebral herniation, were first noted 3 to 5 days after initial presentation in 4 patients, though were apparent as early as 24 hours in 1 case. When MRI was performed early in a patient’s course, focal regions of cortical diffusion restriction were noted. Later MRI studies demonstrated diffuse cytotoxic edema, with severe cerebral herniation. Postmortem studies revealed diffuse brain edema and widespread neuronal damage. Laminar necrosis was seen in 1 case. Cerebral edema leading to fatal brain herniation is an important, previously unreported sequela of status epilepticus in children with DS. This potentially remediable complication may be a significant contributor to the early mortality of DS.

Publisher

American Academy of Pediatrics (AAP)

Subject

Pediatrics, Perinatology, and Child Health

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