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Dose selection for biological enzyme replacement therapy indicated for inborn errors of metabolism
Yuen Yi Hon1, Jie Wang2, Henrietta Abodakpi2
1Division of Rare Diseases and Medical Genetics, Office of Rare Diseases, Pediatrics, Urologic and Reproductive Medicine, Office of New Drugs (OND), Center of Drug Evaluation and Research (CDER), Food and Drug Administration (FDA), Silver Spring, Maryland, USA.
Abstract:
This paper summarizes key features of the dose-finding strategies used in the development of 11 approved new molecular entities that are first-in-class enzyme replacement therapy (ERT), with a goal to gain insight into the dose exploration approaches to inform efficient dose-finding in future development of biological products for Inborn Errors of Metabolism (IEM). Dose exploration should preferably begin in in vitro studies, followed by testing multiple doses in an appropriate animal disease model, when available, which can provide important information for dose assessment in humans. Performing adequate dose-finding in early phase clinical studies in a well-defined study population, including pediatric subjects, is generally critical to inform dose selection for pivotal trials; alternatively, additional dose exploration can be incorporated as part of a pivotal trial. Two important considerations for successful dose selection include (1) identifying appropriate disease-specific endpoints, including pharmacodynamic (PD) end points and intermediate clinical end points or clinical end points, and (2) designing a study with adequate treatment durations for evaluating these end points. Appropriately selected PD biomarkers is useful for dose selection, and early development of these biomarkers can facilitate the overall clinical development program. Optimization of ERT doses, as well as evaluations of patient intrinsic factors and/or immune tolerance strategies may be necessary to overcome antibody responses or increase efficacy in IEM.
Insights
Efficient dose-finding for enzyme replacement therapy (ERT) in inborn errors of metabolism (IEM) requires early in vitro and animal studies, followed by robust clinical trials. Key strategies include defining specific endpoints and utilizing pharmacodynamic biomarkers for optimal dosing.
Area of Science:
- Biochemistry
- Pharmacology
- Genetics
Background:
- Enzyme replacement therapy (ERT) is crucial for treating inborn errors of metabolism (IEM).
- Developing novel biological products for IEM requires efficient dose-finding strategies.
- First-in-class ERTs present unique challenges in dose exploration.
Purpose of the Study:
- To summarize dose-finding strategies from 11 approved first-in-class ERTs.
- To provide insights for optimizing dose exploration in future biological product development for IEM.
- To inform efficient dose selection for novel IEM therapies.
Main Methods:
- Review of dose-finding approaches used in 11 approved first-in-class ERTs.
- Analysis of dose exploration from in vitro studies, animal models, and clinical trials.
- Identification of critical factors for successful dose selection.
Main Results:
- Early dose exploration in vitro and in animal models is recommended.
- Adequate dose-finding in early clinical studies, including pediatric populations, is critical.
- Disease-specific endpoints, pharmacodynamic biomarkers, and adequate study durations are essential for dose selection.
Conclusions:
- Optimized ERT dosing, consideration of patient factors, and immune tolerance strategies may be necessary for efficacy in IEM.
- Early development and utilization of pharmacodynamic biomarkers can facilitate clinical development.
- A multi-stage approach to dose-finding, from preclinical to clinical studies, is vital for IEM therapies.
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