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A Versatile Murine Model of Subcortical White Matter Stroke for the Study of Axonal Degeneration and White Matter Neurobiology
Published on: March 17, 2016
White matter spongiosis with vigabatrin therapy for infantile spasms
Phillip L Pearl1, Annapurna Poduri1,2, Sanjay P Prabhu2,3
1Department of Neurology, Boston Children's Hospital, Harvard Medical School, Boston, MA, USA.
Abstract:
The histopathology, "white matter spongiosis," defined by electron microscopy (EM) as "intramyelinic edema," has been associated with vigabatrin therapy in various animal models, but its role or significance in clinical studies is unknown. We conducted a neuropathological examination on a 27-month-old boy with bilateral polymicrogyria and epilepsy after sudden unexpected death in epilepsy (SUDEP). The patient was initiated on vigabatrin at 4 months of age, which controlled infantile spasms, and was continued as maintenance therapy. Autopsy showed a combination of developmental and acquired lesions: (1) bilateral gyral malformations of the frontal, parietal, temporal, and insular cortex; (2) agenesis of the olfactory tracts and bulbs; (3) hippocampal abnormalities: dentate gyrus bilamination and granule cell dispersion; and (4) areas of microscopic bilateral, symmetric white matter spongiosis in the brainstem central tegmental tract, amiculum and hilum of the inferior olive, medial longitudinal fasciculus, paragigantocellularis lateralis, optic nerves and chiasm, and hypothalamus. The white matter spongiosis was identical to the histopathologic lesions (which by EM exhibited intramyelinic edema) that were demonstrated in animal models on vigabatrin therapy, indicating that vigabatrin toxicity is not restricted to animal models.
Insights
Vigabatrin therapy in infants may cause white matter spongiosis, a brain lesion previously seen only in animal models. This study confirms vigabatrin toxicity in humans, highlighting potential risks associated with this epilepsy medication.
Area of Science:
- Neuropathology
- Neuropharmacology
- Pediatric Neurology
Background:
- White matter spongiosis, characterized by intramyelinic edema, is a known histopathological finding in animal models treated with vigabatrin.
- The clinical significance and occurrence of this lesion in humans receiving vigabatrin therapy remain largely uncharacterized.
Observation:
- A neuropathological examination was performed on a 27-month-old boy with polymicrogyria and epilepsy, who received vigabatrin from 4 months of age.
- Autopsy revealed developmental brain abnormalities and acquired lesions, including bilateral, symmetric white matter spongiosis in multiple brain regions.
Findings:
- The observed white matter spongiosis in the patient was histopathologically identical to lesions found in vigabatrin-treated animal models.
- This finding suggests that vigabatrin-induced white matter toxicity is not limited to animal models and can occur in humans.
Implications:
- This study provides the first clinical evidence of vigabatrin-associated white matter spongiosis in humans.
- It underscores the potential neurotoxic effects of vigabatrin, necessitating careful monitoring in pediatric patients undergoing treatment for epilepsy.
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