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Biomarker-Driven Oncology Clinical Trials: Novel Designs in the Era of Precision Medicine
Donald C Moore1, Andrew S Guinigundo2
1From Department of Pharmacy, Levine Cancer Institute, Atrium Health, Charlotte, North Carolina.
Abstract:
Oncology drug development historically has followed a path of sequential phase I, II, and III clinical trials using traditional trial designs, with the goal of achieving regulatory approval. These studies are often conducted with inclusion criteria that limit enrollment to a single tumor type or tumor site of origin, excluding other patients who might also respond. Increased use of precision medicine targeting biomarkers or specific oncogenic mutations has led to novel clinical trial designs that can evaluate these therapies in a less limited fashion. Master protocols such as basket trials, umbrella trials, and platform trials can, for example, evaluate histology-specific therapies targeting a common oncogenic mutation across multiple tumor types or screen for the presence of multiple different biomarkers rather than a single one. In other cases, they can lead to more rapid evaluation of a drug and evaluate targeted therapies in tumor types for which they are not yet currently indicated. As the use of complex biomarker-based master protocols increases, advanced practitioners must understand these novel trial designs, their advantages and disadvantages, and how their use may advance drug development and maximize the clinical benefits of molecular precision therapy.
Insights
Precision medicine in oncology is shifting drug development. Novel master protocols, like basket and umbrella trials, enable broader patient eligibility and faster evaluation of targeted therapies.
Area of Science:
- Oncology
- Clinical Trial Design
- Precision Medicine
Background:
- Traditional oncology drug development relies on sequential phase I-III trials with restrictive eligibility criteria.
- These limitations exclude patients who might benefit from therapies targeting specific oncogenic mutations or biomarkers.
Purpose of the Study:
- To explore novel clinical trial designs in precision oncology.
- To discuss the advantages and disadvantages of master protocols in advancing drug development.
Main Methods:
- Review of master protocol designs including basket, umbrella, and platform trials.
- Analysis of how these designs facilitate biomarker-driven therapy evaluation across diverse tumor types.
Main Results:
- Master protocols allow evaluation of histology-specific therapies across multiple tumor types.
- These designs enable screening for multiple biomarkers and faster drug assessment.
- Targeted therapies can be evaluated in new tumor types, expanding indications.
Conclusions:
- Complex biomarker-based master protocols are increasing in oncology.
- Understanding these novel trial designs is crucial for practitioners.
- These designs can advance drug development and maximize clinical benefits of molecular precision therapy.
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