Cannabidiol in Developmental Epilepsy: Organoid-Guided Precision Medicine Across Critical Neurodevelopmental Windows
Jin Joo1, Woo Sub Yang2, Hyun Jung Koh1
1Department of Anesthesiology and Pain Medicine, Seoul St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul 06591, Republic of Korea.
Abstract:
Epilepsy is a progressive network disorder in which recurrent seizures drive maladaptive neurodevelopmental remodeling, cognitive decline, and pharmacoresistance, particularly in developmental epileptic encephalopathies. Cannabidiol (CBD) has emerged as an evidence-based adjunctive therapy for selected childhood-onset epilepsies; however, its broader clinical utility remains limited by heterogeneous responsiveness, restricted indications, and an incomplete understanding of developmental stage-specific efficacy and safety. Here, we synthesize molecular, preclinical and clinical evidence supporting the pleiotropic antiseizure and neuroprotective actions of CBD, including modulation of endocannabinoid-related G protein-coupled receptors, adenosine signaling, transient receptor potential channels, GABAergic maturation, and neuroinflammatory cascades. We highlight critical neurodevelopmental windows during which timely CBD intervention may exert disease-modifying effects by preventing pathological consolidation of hyperexcitable networks. Furthermore, we position human brain organoids as transformative translational platforms that recapitulate early human cortical development and epileptic network dynamics, enabling functional stratification of CBD-responsive phenotypes, developmental safety profiling, and precision therapeutic discovery within human-relevant neural circuits. Collectively, organoid-guided frameworks provide a mechanistic foundation for personalized, developmentally informed CBD therapy and advance precision medicine strategies aimed at modifying epileptogenic trajectories rather than solely suppressing seizures.
Insights
Cannabidiol (CBD) shows promise for epilepsy by modulating brain networks and offering neuroprotection. Human brain organoids aid in understanding developmental effects and personalizing CBD therapy for better outcomes.
Area of Science:
- Neuroscience
- Developmental Biology
- Pharmacology
Background:
- Epilepsy is a progressive network disorder causing cognitive decline and pharmacoresistance.
- Developmental epileptic encephalopathies are particularly challenging.
- Cannabidiol (CBD) is an adjunctive therapy for childhood epilepsies, but its use is limited by variable responses and incomplete understanding of its effects.
Purpose of the Study:
- To synthesize evidence on CBD's antiseizure and neuroprotective actions.
- To explore CBD's disease-modifying potential during critical neurodevelopmental windows.
- To utilize human brain organoids for precision therapeutic discovery in epilepsy.
Main Methods:
- Review of molecular, preclinical, and clinical evidence for CBD's mechanisms.
- Highlighting neurodevelopmental stages for CBD intervention.
- Employing human brain organoids to model cortical development and epilepsy.
Main Results:
- CBD modulates multiple targets, including GPCRs, adenosine signaling, TRP channels, GABAergic maturation, and neuroinflammation.
- Timely CBD intervention may prevent pathological network consolidation.
- Brain organoids enable stratification of CBD-responsive phenotypes and safety profiling.
Conclusions:
- Organoid-guided frameworks support personalized, developmentally informed CBD therapy.
- CBD has pleiotropic antiseizure and neuroprotective effects.
- This approach advances precision medicine for epilepsy, aiming to modify disease trajectories.
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