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Published on: May 16, 2019
Development of new treatment approaches for epilepsy: unmet needs and opportunities
Jacqueline A French1, H Steve White, Henrik Klitgaard
1Department of Neurology, NYU School of Medicine, New York, New York 10016, USA. Jacqueline.french@nyumc.org
Abstract:
A working group was created to address clinical "gaps to care" as well as opportunities for development of new treatment approaches for epilepsy. The working group primarily comprised clinicians, trialists, and pharmacologists. The group identified a need for better animal models for both efficacy and tolerability, and noted that animal models for potential disease-modifying or antiepileptogenic effect should mirror conditions in human trials. For antiseizure drugs (ASDs), current animal models have not been validated with respect to their relationship to efficacy in common epilepsy syndromes. The group performed an "expert opinion" survey of perceived efficacy of the available ASDs, and identified a specific unmet need for ASDs to treat tonic-atonic and myoclonic seizures. No correlation has as yet been demonstrated between animal models of tolerability and adverse effects (AEs), versus tolerability in humans. There is a clear opportunity for improved therapies in relation to dose-related AEs. The group identified common and rare epilepsy syndromes that could represent opportunities for clinical trials. They identified opportunities for antiepileptogenic (AEG) therapies in both adults and children, acknowledging that the presence of a biomarker would substantially improve the chances of a successful trial. However, the group acknowledged that disease-modifying therapies (given after the first seizure or after the development of epilepsy) would be easier to study than AEG therapies.
Insights
Researchers identified critical gaps in epilepsy care and treatment development. They highlighted the need for improved animal models and new antiseizure drugs (ASDs) for specific seizure types.
Area of Science:
- Neuroscience
- Pharmacology
- Clinical Trials
Background:
- A working group convened to address clinical "gaps to care" and explore new epilepsy treatment strategies.
- The group consisted of clinicians, trialists, and pharmacologists focused on epilepsy research.
Purpose of the Study:
- To identify unmet needs in epilepsy treatment and opportunities for developing novel therapeutic approaches.
- To evaluate the current landscape of animal models and their relevance to human epilepsy trials.
Main Methods:
- Expert opinion survey on the perceived efficacy of existing antiseizure drugs (ASDs).
- Analysis of current animal models for efficacy, tolerability, disease-modification, and antiepileptogenic effects.
- Identification of epilepsy syndromes suitable for clinical trials.
Main Results:
- Current animal models lack validation for predicting human efficacy and tolerability of ASDs.
- A significant unmet need exists for ASDs targeting tonic-atonic and myoclonic seizures.
- Opportunities for antiepileptogenic (AEG) therapies were identified, with biomarkers enhancing trial success.
- Disease-modifying therapies may be more feasible to study than AEG therapies.
Conclusions:
- Improved animal models are crucial for validating new epilepsy treatments.
- Development of ASDs for specific seizure types and AEG therapies presents key opportunities.
- Clinical trial design for epilepsy needs to consider the distinct challenges of studying AEG versus disease-modifying interventions.
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