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Systematic review of combinations of targeted or immunotherapy in advanced solid tumors
Aaron C Tan1,2, Stephen J Bagley3, Patrick Y Wen4
1Division of Medical Oncology, National Cancer Centre Singapore, Singapore.
Abstract:
With rapid advances in our understanding of cancer, there is an expanding number of potential novel combination therapies, including novel-novel combinations. Identifying which combinations are appropriate and in which subpopulations are among the most difficult questions in medical research. We conducted a Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA)-guided systematic review of trials of novel-novel combination therapies involving immunotherapies or molecular targeted therapies in advanced solid tumors. A MEDLINE search was conducted using a modified Cochrane Highly Sensitive Search Strategy for published clinical trials between July 1, 2017, and June 30, 2020, in the top-ranked medical and oncology journals. Trials were evaluated according to a criterion adapted from previously published Food and Drug Administration guidance and other key considerations in designing trials of combinations. This included the presence of a strong biological rationale, the use of a new established or emerging predictive biomarker prospectively incorporated into the clinical trial design, appropriate comparator arms of monotherapy or supportive external data sources and a primary endpoint demonstrating a clinically meaningful benefit. Of 32 identified trials, there were 11 (34%) trials of the novel-novel combination of anti-programmed death 1 (PD-1)/programmed death ligand 1 (PD-L1) and anti-cytotoxic T lymphocyte-associated antigen-4 (CTLA-4) therapy, and 10 (31%) trials of anti-PD-1/PD-L1 and anti-vascular endothelial growth factor (VEGF) combination therapy. 20 (62.5%) trials were phase II trials, while 12 (37.5%) were phase III trials. Most (72%) trials lacked significant preclinical evidence supporting the development of the combination in the given indication. A majority of trials (69%) were conducted in biomarker unselected populations or used pre-existing biomarkers within the given indication for patient selection. Most studies (66%) were considered to have appropriate comparator arms or had supportive external data sources such as prior studies of monotherapy. All studies were evaluated as selecting a clinically meaningful primary endpoint. In conclusion, designing trials to evaluate novel-novel combination therapies presents numerous challenges to demonstrate efficacy in a comprehensive manner. A greater understanding of biological rationale for combinations and incorporating predictive biomarkers may improve effective evaluation of combination therapies. Innovative statistical methods and increasing use of external data to support combination approaches are potential strategies that may improve the efficiency of trial design. Designing trials to evaluate novel-novel combination therapies presents numerous challenges to demonstrate efficacy in a comprehensive manner. A greater understanding of biological rationale for combinations and incorporating predictive biomarkers may improve effective evaluation of combination therapies. Innovative statistical methods and increasing use of external data to support combination approaches are potential strategies that may improve the efficiency of trial design.
Insights
Identifying optimal novel combination cancer therapies is challenging. This review found many trials lacked strong biological rationale or predictive biomarkers, hindering efficacy evaluation.
Area of Science:
- Oncology
- Clinical Trial Design
- Cancer Therapeutics
Background:
- Advances in cancer understanding have led to numerous novel combination therapies.
- Determining the appropriateness of these combinations and identifying target subpopulations remain significant research challenges.
Purpose of the Study:
- To systematically review clinical trials of novel-novel combination therapies in advanced solid tumors.
- To evaluate trial designs based on biological rationale, biomarker use, comparator arms, and endpoints.
Main Methods:
- A PRISMA-guided systematic review of clinical trials published between July 2017 and June 2020.
- MEDLINE search using a modified Cochrane Highly Sensitive Search Strategy in top-ranked journals.
- Trials evaluated against criteria adapted from FDA guidance, focusing on rationale, biomarkers, comparators, and endpoints.
Main Results:
- 32 trials were identified, with anti-PD-1/PD-L1 and anti-CTLA-4 (11 trials) and anti-PD-1/PD-L1 and anti-VEGF (10 trials) being common combinations.
- Most trials (72%) lacked significant preclinical evidence, and 69% used biomarker-unselected populations.
- While most studies had appropriate comparator arms (66%) and clinically meaningful endpoints, a majority lacked robust biological rationale or prospective biomarker incorporation.
Conclusions:
- Designing effective trials for novel-novel combination therapies faces significant challenges in demonstrating comprehensive efficacy.
- Incorporating a stronger biological rationale and prospective predictive biomarkers is crucial for improving evaluation.
- Innovative statistical methods and leveraging external data may enhance the efficiency of future combination trial designs.
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