Cenobamate as add-on treatment for SCN8A developmental and epileptic encephalopathy.

Cecilie Johannessen Landmark, Emilia Ricci, Elena Gardella, Simona Balestrini, Rikke S Møller, Guido Rubboli, Roberto Previtali, Marina Trivisano, Renzo Guerrini, Pierangelo Veggiotti, Angel Aledo-Serrano, Cathrine E Gjerulfsen, Madeleine J Oudin, Francesca Furia, Sopio Gverdtsiteli, Ricardo Morcos

Journal: Epilepsia 2025;66(4):1119-1128

PMID: 39812613

Abstract

OBJECTIVES

Developmental and epileptic encephalopathies (DEEs) caused by pathogenic variants in SCN8A are associated with difficult-to-treat and early-onset seizures, developmental delay/intellectual disability, impaired quality of life, and increased risk of early mortality. High doses of sodium channel blockers are typically used to treat SCN8A-DEE caused by gain-of-function (GoF) variants. However, seizures are often drug resistant, and only a few patients achieve seizure freedom. In this retrospective study, the effect of cenobamate was assessed in patients with SCN8A-DEE.

METHODS

Across multiple centers and through collaborations with SCN8A patient advocacy organizations, patients with SCN8A-DEE treated with cenobamate for ≥6 months were identified. Data were obtained from patients' caregivers or treating physicians through a (Research Electronic Data Capture) REDCap survey. The functional effect of the SCN8A variants was obtained from the literature or assessed by prediction tools.

RESULTS

Twelve patients (3-25 years of age (median 8 years), 9 females) with presumed GoF SCN8A variants were treated with cenobamate for a mean period of 17 months (range 6-42 months). Countable motor seizures were meaningfully reduced in 10 of 12 patients (83%). Six patients experienced a seizure reduction above 70%, of which two achieved seizure freedom. In addition, two patients achieved a reduction in seizures ranging between 50% and 70%. An increase in seizure-free days per patient was also reported. Rescue medication was decreased in six of seven patients (85%) in need. Furthermore, 80% of patients reported non-seizure-related improvements, which included increased alertness, better sleep, and improved muscle tone. Adverse effects were reported by 50% of patients, and half resolved spontaneously or through the reduction of concomitant antiseizure medications.

SIGNIFICANCE

Our data suggest that cenobamate is a promising and safe treatment for SCN8A-DEE, even during early childhood. As a potential precision approach to treatment, cenobamate significantly reduced seizure burden and improved non-seizure-related symptoms. These positive outcomes may also be achieved in patient cohorts with GoF variants in other voltage-gated sodium channel genes.

© 2025 International League Against Epilepsy.

Address: Department of Epilepsy Genetics and Personalized Medicine, Danish Epilepsy Center, Dianalund, Denmark.; Department of Regional Health Research, Faculty of Health Sciences, University of Southern, Odense, Denmark.; Department of Biomedical Engineering, Tufts University, Medford, Massachusetts, USA.; Department of Pharmacy, Oslo Metropolitan University, Oslo, Norway.; The National Center for Epilepsy, Oslo University Hospital, Member of the ERN EpiCare, Oslo, Norway.; Department of Pharmacology, Oslo University Hospital, Oslo, Norway.; Epilepsy and Movement Disorders Unit, Bambino Gesu Children's Hospital, Rome, Italy.; Neuroscience and Medical Genetics Department, Meyer Children's Hospital, Florence, Italy.; NEUROFARBA Department, University of Florence, Florence, Italy.; Epilepsy Unit, Vithas Madrid University Hospitals, Madrid, Spain.; Epilepsy Unit, Vithas Madrid University Hospitals, Madrid, Spain.; Universidad Europea de Madrid, Madrid, Spain.; Neuroscience Research Center, Department of Biomedical and Clinical Sciences, University of Milan, Milan, Italy.; Pediatric Neurology Unit, Buzzi Children's Hospital, Milan, Italy.; Department of Epilepsy Genetics and Personalized Medicine, Danish Epilepsy Center, Dianalund, Denmark.; Child Neuropsychiatry Unit, Epilepsy Center, San Paolo Hospital, Milan, Italy.; Department of Health Sciences, University of Milan, Milan, Italy.; Department of Epilepsy Genetics and Personalized Medicine, Danish Epilepsy Center, Dianalund, Denmark.; Institute of Clinical Medicine, University of Copenhagen, Copenhagen, Denmark.; Department of Epilepsy Genetics and Personalized Medicine, Danish Epilepsy Center, Dianalund, Denmark.; Department of Regional Health Research, Faculty of Health Sciences, University of Southern, Odense, Denmark.; Department of Clinical Neurophysiology, Danish Epilepsy Center, Dianalund, Denmark.
Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.