EVIDENCE meta-analysis: evaluating minimal residual disease as an intermediate clinical end point for multiple
Ola Landgren1, Thomas J Prior2, Tara Masterson2
1Division of Myeloma, Department of Medicine, Sylvester Myeloma Research Institute, Sylvester Comprehensive Cancer Center, University of Miami, Miami, FL.
Abstract:
Estimating progression-free survival (PFS) and overall survival superiority during clinical trials of multiple myeloma (MM) has become increasingly challenging as novel therapeutics have improved patient outcomes. Thus, it is imperative to identify earlier end point surrogates that are predictive of long-term clinical benefit. Minimal residual disease (MRD)-negativity is a common intermediate end point that has shown prognostic value for clinical benefit in MM. This meta-analysis was based on the US Food and Drug Administration guidance for considerations for a meta-analysis of MRD as a clinical end point and evaluates MRD-negativity as an early end point reasonably likely to predict long-term clinical benefit. Eligible studies were phase 2 or 3 randomized controlled clinical trials measuring MRD-negativity as an end point in patients with MM, with follow-up of ≥6 months following an a priori-defined time point of 12 ± 3 months after randomization. Eight newly diagnosed MM studies evaluating 4907 patients were included. Trial-level associations between MRD-negativity and PFS were R2WLSiv, 0.67 (95% confidence interval [CI], 0.43-0.91) and R2copula 0.84 (0.64 to >0.99) at the 12-month time point. The individual-level association between 12-month MRD-negativity and PFS resulted in a global odds ratio (OR) of 4.02 (95% CI, 2.57-5.46). For relapse/refractory MM, there were 4 studies included, and the individual-level association between 12-month MRD-negativity and PFS resulted in a global OR of 7.67 (4.24-11.10). A clinical trial demonstrating a treatment effect on MRD is reasonably likely to eventually demonstrate a treatment effect on PFS, suggesting that MRD may be an early clinical end point reasonably likely to predict clinical benefit in MM, that may be used to support accelerated approval and thereby, expedite the availability of new drugs to patients with MM.
Insights
Minimal residual disease (MRD) negativity is a strong predictor of long-term clinical benefit in multiple myeloma (MM). Achieving MRD negativity early in treatment can support accelerated drug approval for MM patients.
Area of Science:
- Hematology
- Clinical Trials
- Oncology
Background:
- Estimating progression-free survival (PFS) in multiple myeloma (MM) clinical trials is challenging due to improved patient outcomes with novel therapies.
- Identifying early surrogate endpoints that predict long-term clinical benefit is crucial for MM research.
- Minimal residual disease (MRD)-negativity has emerged as a prognostic intermediate endpoint in MM.
Purpose of the Study:
- To evaluate MRD-negativity as an early endpoint that is reasonably likely to predict long-term clinical benefit in MM.
- To assess the association between MRD-negativity and PFS based on FDA guidance for meta-analyses.
- To determine if MRD-negativity can support accelerated approval of new MM therapeutics.
Main Methods:
- Meta-analysis of Phase 2 or 3 randomized controlled clinical trials in MM measuring MRD-negativity.
- Inclusion of studies with a minimum follow-up of 6 months post a 12 ± 3 month randomization time point.
- Analysis of both trial-level and individual-level associations between MRD-negativity and PFS.
Main Results:
- Eight newly diagnosed MM studies (4907 patients) showed strong trial-level associations between 12-month MRD-negativity and PFS (R2WLSiv=0.67, R2copula=0.84).
- Individual-level analysis revealed a global odds ratio (OR) of 4.02 for PFS in newly diagnosed MM and 7.67 in relapsed/refractory MM.
- A treatment effect on MRD is likely to predict a treatment effect on PFS.
Conclusions:
- MRD-negativity is a reliable early clinical endpoint for predicting long-term clinical benefit in MM.
- MRD-negativity can potentially expedite the availability of new MM drugs through accelerated approval pathways.
- This finding supports the use of MRD-negativity in MM clinical trial design and regulatory evaluation.


