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Epilepsy in patients with WWOX-related epileptic encephalopathy (WOREE) syndrome

Par : Contributeur(s) : Type de matériel : TexteTexteLangue : français Détails de publication : 2022. Sujet(s) : Ressources en ligne : Abrégé : ObjectiveEpileptic encephalopathy (EE) is difficult to diagnose and manage. It can be caused by a variety of disorders, and its aetiology may guide management and prognosis. The human gene for WW domain-containing oxidoreductase ( WWOX) has been associated with epileptic encephalopathy, which presents in infancy with seizures, psychomotor delay, microcephaly, and optic atrophy. MethodsWe report nine patients with WWOX-related EE from six families. We provide detailed descriptions of clinical presentations, imaging findings, neurophysiological manifestations, and related mutations. Whole-exome sequencing (WES) was used to identify the mutations in the WWOX gene. ResultsWe established correlations between genotype and phenotype in our cases and previously reported cases. SignificanceOur data support previously reported findings regarding WWOX-related EE, indicating the importance of the human WWOX gene in brain development and the association between WWOX mutations and EE. Our study also highlights the power of WES, particularly in clinically challenging cases.
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ObjectiveEpileptic encephalopathy (EE) is difficult to diagnose and manage. It can be caused by a variety of disorders, and its aetiology may guide management and prognosis. The human gene for WW domain-containing oxidoreductase ( WWOX) has been associated with epileptic encephalopathy, which presents in infancy with seizures, psychomotor delay, microcephaly, and optic atrophy. MethodsWe report nine patients with WWOX-related EE from six families. We provide detailed descriptions of clinical presentations, imaging findings, neurophysiological manifestations, and related mutations. Whole-exome sequencing (WES) was used to identify the mutations in the WWOX gene. ResultsWe established correlations between genotype and phenotype in our cases and previously reported cases. SignificanceOur data support previously reported findings regarding WWOX-related EE, indicating the importance of the human WWOX gene in brain development and the association between WWOX mutations and EE. Our study also highlights the power of WES, particularly in clinically challenging cases.

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