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Published on: July 25, 2020
Molecular Tumor Boards clinical impact on patient care and structural features: A systematic review and meta-analysis
Luigi Russo1, Erika Giacobini1, Nicolò Lentini1
1Section of Hygiene, Department of Life Sciences and Public Health, Università Cattolica del Sacro Cuore, Rome, Italy.
Background:
Molecular Tumor Boards (MTBs) bring together multidisciplinary experts to translate genomic data into clinical decisions in oncology, however, their overall clinical impact remains unclear. The aim of this systematic review is to assess the clinical impact of MTB-recommended therapies on patients with cancer outcomes.
Methods And Findings:
In this systematic review and meta-analysis, we searched PubMed, Embase, Scopus, and CENTRAL up to July 2025. We included studies of any design, both single-arm studies and studies with a comparator group, that reported the clinical impact of MTBs in patients who received MTB-guided therapy. Meta-analyses were performed separately by study design, using hazard ratios (HRs) for overall survival (OS) and progression-free survival (PFS), relative risks (RRs) for objective response rate (ORR) and disease control rate (DCR), and pooled proportions for PFS ratio ≥1.3. All meta-analyses were conducted using random-effects models based on the inverse variance method. We evaluated the risk of bias using the RoB 2.0 for RCTs and ROBINS-I for non-randomized studies. From 6,846 records, 78 studies (9,195 patients; 4,569 treated per MTB recommendations) were included. MTB-guided therapies were associated with reduced risk of death (HR 0.87; 95% CI [0.76, 1.01]; p = 0.069; I2 = 0.0% in RCTs; 0.62 in retrospective studies) and disease progression (HR 0.73; 95% CI [0.64, 0.84]; p < 0.001; I2 = 0.0% in RCTs; 0.63 in retrospective studies), as well as improved ORR (RR 1.75; 95% CI [1.24, 2.47]; p = 0.001; I2 = 0.0% in RCTs; 3.32 in retrospective studies) and DCR (RR 1.20; 95% CI [1.03, 1.40]; p = 0.018; I2 = 19.9% in RCTs; 1.65 in retrospective studies). Between 33% and 43% of patients achieved a PFS ratio ≥1.3. While the risk of bias for RCTs was low, except for one study that was rated as having some concerns, the overall risk of bias for non-randomized studies was rated as "serious" in most of the studies (n = 54). Limitations include substantial heterogeneity, predominance of non-randomized studies with risk of bias, and limitations in data reporting, which restrict causal inference.
Conclusions:
This meta-analysis provides robust evidence from RCTs supporting the clinical benefit of MTBs, although limited for OS. Methodological heterogeneity and study limitations from observational studies warrant cautious interpretation. Future high-quality RCTs and standardized reporting are needed to confirm these findings and guide the integration of MTBs into routine clinical practice and health system strategies.
Insights
Molecular Tumor Boards (MTBs) improve cancer patient outcomes by guiding therapy. This review found MTB-guided treatments reduced death and progression, and improved response rates, especially in randomized controlled trials.
Area of Science:
- Oncology
- Genomics
- Clinical Decision-Making
Background:
- Molecular Tumor Boards (MTBs) integrate genomic data for cancer treatment decisions.
- The clinical impact of MTB-recommended therapies on patient outcomes is not well-established.
Purpose of the Study:
- To systematically review and meta-analyze the clinical impact of MTB-recommended therapies on cancer patient outcomes.
Main Methods:
- Systematic review and meta-analysis of 78 studies (9,195 patients) from PubMed, Embase, Scopus, and CENTRAL.
- Analyzed overall survival (OS), progression-free survival (PFS), objective response rate (ORR), and disease control rate (DCR).
- Evaluated risk of bias for randomized controlled trials (RCTs) and non-randomized studies.
Main Results:
- MTB-guided therapies were associated with reduced risk of death (HR 0.87 in RCTs) and disease progression (HR 0.73 in RCTs).
- Improved objective response rates (RR 1.75 in RCTs) and disease control rates (RR 1.20 in RCTs) were observed.
- 33-43% of patients achieved a PFS ratio ≥1.3; RCTs showed low risk of bias, while observational studies had significant bias.
Conclusions:
- RCT evidence supports the clinical benefit of MTBs, particularly for PFS and ORR.
- Observational study limitations necessitate cautious interpretation.
- High-quality RCTs and standardized reporting are crucial for integrating MTBs into routine practice.
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