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Oncologic orphan drugs approved in the EU - do clinical trial data correspond with real-world effectiveness?
Yvonne Schuller1, Marieke Biegstraaten2, Carla E M Hollak2
1Department of Endocrinology and Metabolism, F5-165, Academic Medical Center, University of Amsterdam, Meibergdreef 9, 1105, AZ, Amsterdam, The Netherlands. y.schuller@amc.uva.nl.
Background:
Evaluation of evidence for efficacy of orphan medicinal products (OMPs) for rare malignancies may be hampered by the use of tumor measurements instead of clinical endpoints. This may cause efficacy data to not always match effectiveness in the real-world. We investigated whether an efficacy-effectiveness gap exists for oncologic OMPs and aimed to identify which factors contribute to it. Also, the magnitude of the clinical efficacy of oncologic OMPs was evaluated.
Methods:
We included all oncologic OMPs authorized in the European Union from 2000 to 2017. Pivotal studies were evaluated by means of the European Society for Medical Oncology - Magnitude of Clinical Benefit Scale (ESMO-MCBS). To estimate real-world effectiveness, a literature search was performed to identify post-marketing studies, of which data on overall survival (OS) were extracted. OS of the new OMP was compared with OS data of standard of care. An OS gain of ≥3 months compared to pre-marketing data was considered clinically relevant.
Results:
Twenty OMPs were included, of which 5 were authorized based on OS as a primary endpoint. 10 OMPs had post-marketing data available, of which 40% did not show a clinically relevant OS gain in the real world. All OMPs that were studied with OS as primary endpoint in the pivotal study had a clinically relevant OS gain in the real world. Furthermore, all OMPs that had a high ESMO-MCBS score and post-marketing data available, resulted in a clinically relevant OS gain in the real world.
Conclusions:
Although the sample size is small, our results indicate an efficacy-effectiveness gap for oncologic OMPs exists. Significant changes in PFS do not always lead to an increased OS. The use of PFS may be justified, but validation of surrogate endpoints is needed.
Insights
An efficacy-effectiveness gap exists for orphan medicinal products (OMPs) in rare cancers, as tumor measurements may not reflect real-world clinical benefit. Validating surrogate endpoints is crucial for accurate OMP evaluation.
Area of Science:
- Oncology
- Pharmacology
- Clinical Research
Background:
- Efficacy of orphan medicinal products (OMPs) for rare cancers may be overestimated due to reliance on tumor measurements over clinical endpoints.
- This discrepancy can lead to a gap between demonstrated efficacy and real-world effectiveness.
- Investigating this efficacy-effectiveness gap is crucial for accurate assessment of OMPs.
Purpose of the Study:
- To determine if an efficacy-effectiveness gap exists for oncologic OMPs.
- To identify factors contributing to this gap.
- To evaluate the magnitude of clinical efficacy for oncologic OMPs.
Main Methods:
- Included oncologic OMPs authorized in the EU (2000-2017).
- Assessed pivotal studies using the European Society for Medical Oncology - Magnitude of Clinical Benefit Scale (ESMO-MCBS).
- Extracted overall survival (OS) data from post-marketing studies to estimate real-world effectiveness, comparing it to pre-marketing data.
Main Results:
- Twenty OMPs were analyzed; 5 used OS as a primary endpoint.
- 40% of OMPs with available post-marketing data showed no clinically relevant OS gain.
- OMPs with OS as a primary endpoint or high ESMO-MCBS scores demonstrated clinically relevant OS gains in real-world data.
Conclusions:
- An efficacy-effectiveness gap for oncologic OMPs was observed.
- Progression-free survival (PFS) changes do not consistently translate to improved OS.
- Validation of surrogate endpoints like PFS is necessary to bridge the efficacy-effectiveness gap.
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