Related Experiment Video
Updated: Jul 6, 2025

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Framework for the Use of External Controls to Evaluate Treatment Outcomes in Precision Oncology Trials
Derrick H W Siu1,2, Frank P Y Lin1,3,4, Doah Cho1
1National Health and Medical Research Council Clinical Trials Centre, University of Sydney, Camperdown, NSW, Australia.
Abstract:
Advances in genomics have enabled anticancer therapies to be tailored to target specific genomic alterations. Single-arm trials (SATs), including those incorporated within umbrella, basket, and platform trials, are widely adopted when it is not feasible to conduct randomized controlled trials in rare biomarker-defined subpopulations. External controls (ECs), defined as control arm data derived outside the clinical trial, have gained renewed interest as a strategy to supplement evidence generated from SATs to allow comparative analysis. There are increasing examples demonstrating the application of EC in precision oncology trials. The prospective application of EC in conducting comparative studies is associated with distinct methodological challenges, the specific considerations for EC use in biomarker-defined subpopulations have not been adequately discussed, and a formal framework is yet to be established. In this review, we present a framework for conducting a prospective comparative analysis using EC. Key steps are (1) defining the purpose of using EC to address the study question, (2) determining if the external data are fit for purpose, (3) developing a transparent study protocol and a statistical analysis plan, and (iv) interpreting results and drawing conclusions on the basis of a prespecified hypothesis. We specify the considerations required for the biomarker-defined subpopulations, which include (1) specifying the comparator and biomarker status of the comparator group, (2) defining lines of treatment, (3) assessment of the biomarker testing panels used, and (4) assessment of cohort stratification in tumor-agnostic studies. We further discuss novel clinical trial designs and statistical techniques leveraging EC to propose future directions to advance evidence generation and facilitate drug development in precision oncology.
Insights
This review proposes a framework for using external controls (ECs) in precision oncology trials, especially for rare subgroups. It outlines key steps and considerations for robust comparative analysis to advance drug development.
Area of Science:
- Oncology
- Genomics
- Clinical Trials
Background:
- Genomic advances allow targeted anticancer therapies.
- Single-arm trials (SATs) are common in rare biomarker-defined subpopulations.
- External controls (ECs) offer a strategy to supplement SATs for comparative analysis.
Purpose of the Study:
- To present a framework for prospective comparative analysis using ECs in precision oncology.
- To address methodological challenges and establish considerations for ECs in biomarker-defined subpopulations.
- To guide evidence generation and drug development in precision oncology.
Main Methods:
- Defining the purpose and suitability of ECs.
- Developing transparent study protocols and statistical analysis plans.
- Specifying considerations for biomarker status, treatment lines, and cohort stratification.
Main Results:
- A four-step framework for prospective comparative analysis using ECs is presented.
- Specific considerations for biomarker-defined subpopulations are detailed.
- Novel trial designs and statistical techniques leveraging ECs are discussed.
Conclusions:
- The proposed framework facilitates robust comparative analysis using ECs in precision oncology.
- Addressing specific considerations enhances the validity of ECs in biomarker-defined subpopulations.
- Future directions aim to advance evidence generation and drug development through innovative trial designs and EC utilization.
Related Concept Videos
Types of Biopharmaceutical Studies: Controlled and Non-Controlled Approaches
Non-controlled studies, commonly employed for initial exploration, lack a control group, rendering them susceptible to biases and external influences. In contrast,...
Clinical Trials
There are four phases in a clinical trial. A phase one...
Cancer Survival Analysis
Combination Therapies and Personalized Medicine
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...
Kaplan-Meier Approach

