COMPREHENSIVE TREATMENT PLATFORM FOR CHILDREN WITH DEVELOPMENTAL AND EPILEPTIC ENCEPHALOPATHIES (TREAT|DEE)
Charité - Universitätsmedizin Berlin
Presentation
Date TBA
Event Information
Poster Board
PS05-09AM-418
Poster
View posterAbstract
Developmental and epileptic encephalopathies (DEEs) are among the most severe pediatric epilepsies, characterized by early-onset seizures and profound developmental impairment. DEEs are clinically and genetically heterogeneous, and conventional anti-seizure medications frequently fail to achieve seizure control or improve long-term outcomes, highlighting an urgent need for precision therapies. Although advances in genomic technologies have accelerated the discovery of epilepsy-associated genes, many children with DEEs remain without a genetic diagnosis, and the phenotypic spectrum of many known disease-causing variants remains incompletely defined.
Defining DEE phenotypes has been central to our previous work.By analyzing germline and somatic variants, we have identified genetic epilepsy causes and characterized their phenotype spectrum, particularly for variants in the genes TRPM3, WWOX, and TULP4, characterized disease mechanisms, and identified novel DEE-targeted medications such as primidone for TRPM3-DEE.
In TREAT|DEE, we aim to develop an integrated gene- and mechanism-targeted precision medicine platform for children with rare, drug-resistant epilepsies such as DEEs. By combining comprehensive genomic analysis with high-throughput drug screening, we seek to identify and prioritize targeted therapies for preclinical and clinical evaluation, including N-of-1 trials. This patient-centered approach aims to improve seizure control, neurodevelopmental outcomes, and quality of life in this vulnerable population.
Recommended posters
TARGETED HCN1 CHANNEL BLOCK AS A PRECISION TREATMENT FOR HCN1 DEVELOPMENTAL AND EPILEPTIC ENCEPHALOPATHY
Lauren Bleakley, Chaseley McKenzie, Ian Forster, Christopher Reid
ASTROCYTE-DRIVEN HYPEREXCITABILITY AS A THERAPEUTIC TARGET IN EPILEPSY
Jon Andreas Naesgaard, Rune Enger, Kjell Heuser
HUMAN INDUCED PLURIPOTENT STEM CELL-DERIVED NEURONAL MODELS OF GABAA RECEPTOR-RELATED DEVELOPMENTAL AND EPILEPTIC ENCEPHALOPATHIES REVEALED ACCELERATED NEURODEVELOPMENT
Miaomiao Mao, Alex Johnson, Kevin Law, Sze Hon Kan, Vivian Liao, Han Chow Chua, Philip Ahring, Lachlan Thompson, Mary Collins
DECIPHERING REGULATORY MECHANSIMS DRIVING DRAVET SYNDROME IN BRAIN ORGANOIDS
Claudia Armillas Salas, Isabel Turpín-Moreno, Milena Sureda-De la Fuente, Sandra Acosta-Verdugo
DEVELOPING MICRORNA-BASED ADVANCED THERAPIES FOR EPILEPSIES
Tom Austin, Eva Parkyn, Gareth Morris
NETWORK MECHANISMS OF EPILEPTOGENESIS IN A MOUSE MODEL OF HCN1 DEVELOPMENTAL AND EPILEPTIC ENCEPHALOPATHIES
Viktoriia Shumkova, Dirk Isbrandt