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Updated: Jan 13, 2026

Implementation of In Vitro Drug Resistance Assays: Maximizing the Potential for Uncovering Clinically Relevant Resistance Mechanisms
Published on: December 9, 2015
A Systematic Review of Evidence for the Cost of Therapeutic Resistance in Cancer
Bailey Kane1,2,3, Lauren Mestas1,3, Madds Garza1,2,4
1Arizona Cancer Evolution Center, Arizona State University, Tempe, Arizona, USA 85287-5301.
Abstract:
Emergence of therapeutic resistance is a critical clinical challenge in cancer treatment, contributing to treatment failure, disease relapse, and overall poor prognosis. Adaptive therapy (AT), a resistance management strategy, aims to address this issue by selectively applying therapeutic pressure to promote competition between therapy-sensitive and therapy-resistant clones, allowing for long-term control of tumor burden. AT relies upon the assumption that resistance comes at some fitness cost in the absence of therapy. Is that assumption justified? We conducted a systematic review of the literature on experimental tests of the fitness cost of therapeutic resistance. We conducted a search for peer-reviewed papers that fulfilled the following selection criteria: (i) experiments of direct competition, (ii) between therapy-resistant and therapy-sensitive clones, (iii) in a therapy-free environment. We found 47 experiments that matched those criteria. Of those experiments, approximately two-thirds (68%) found a fitness cost to resistance in a competitive environment. Of all pooled features from the studies reviewed, we found that the resistance characteristic was most significantly associated with whether resistant clones exhibited a fitness advantage in competition (p=0.0147). Further, we identify complex ecological interactions that may influence the behavior of the cancer cell population without selection by therapeutic pressure. Predicting which resistance characteristics can be exploited therapeutically with AT and identifying potential methods of modulating the costliness of the resistant phenotype may be critical to future improvements in cancer therapy.
Insights
Adaptive therapy (AT) for cancer resistance assumes resistant cells have lower fitness without treatment. A review found 68% of studies support this fitness cost, crucial for AT effectiveness.
Area of Science:
- Oncology
- Evolutionary Biology
- Cancer Research
Background:
- Therapeutic resistance is a major obstacle in cancer treatment, leading to poor patient outcomes.
- Adaptive therapy (AT) is a strategy to manage resistance by fostering competition between sensitive and resistant cancer cells.
Purpose of the Study:
- To systematically review experimental evidence on the fitness cost of therapeutic resistance in cancer cells.
- To evaluate the validity of the assumption that resistance incurs a fitness cost in the absence of therapy, which underpins AT.
Main Methods:
- Conducted a systematic literature review of peer-reviewed papers.
- Included studies with direct competition experiments between therapy-resistant and therapy-sensitive clones in a therapy-free environment.
- Analyzed 47 relevant experiments.
Main Results:
- Approximately two-thirds (68%) of the reviewed experiments demonstrated a fitness cost associated with therapeutic resistance.
- The presence of a fitness cost in resistant clones was significantly linked to the resistance characteristic itself (p=0.0147).
- Identified complex ecological interactions influencing cancer cell populations independent of therapeutic pressure.
Conclusions:
- The assumption of a fitness cost for therapeutic resistance is supported by a majority of experimental evidence.
- Understanding and potentially modulating the fitness cost of resistance is critical for optimizing adaptive therapy.
- Further research into cancer cell ecology is needed to enhance AT strategies and improve cancer treatment outcomes.
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