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Updated: Dec 28, 2025

Drug Repurposing Hypothesis Generation Using the "RE:fine Drugs" System
Published on: December 11, 2016
Turning liabilities into opportunities: Off-target based drug repurposing in cancer
Vinayak Palve1, Yi Liao1, Lily L Remsing Rix1
1Department of Drug Discovery, H. Lee Moffitt Cancer Center & Research Institute, Tampa, FL, 33612, USA.
Abstract:
Targeted drugs and precision medicine have transformed the landscape of cancer therapy and significantly improved patient outcomes in many cases. However, as therapies are becoming more and more tailored to smaller patient populations and acquired resistance is limiting the duration of clinical responses, there is an ever increasing demand for new drugs, which is not easily met considering steadily rising drug attrition rates and development costs. Considering these challenges drug repurposing is an attractive complementary approach to traditional drug discovery that can satisfy some of these needs. This is facilitated by the fact that most targeted drugs, despite their implicit connotation, are not singularly specific, but rather display a wide spectrum of target selectivity. Importantly, some of the unintended drug "off-targets" are known anticancer targets in their own right. Others are becoming recognized as such in the process of elucidating off-target mechanisms that in fact are responsible for a drug's anticancer activity, thereby revealing potentially new cancer vulnerabilities. Harnessing such beneficial off-target effects can therefore lead to novel and promising precision medicine approaches. Here, we will discuss experimental and computational methods that are employed to specifically develop single target and network-based off-target repurposing strategies, for instance with drug combinations or polypharmacology drugs. By illustrating concrete examples that have led to clinical translation we will furthermore examine the various scientific and non-scientific factors that cumulatively determine the success of these efforts and thus can inform the future development of new and potentially lifesaving off-target based drug repurposing strategies for cancers that constitute important unmet medical needs.
Insights
Drug repurposing offers a complementary strategy to traditional cancer drug discovery. Harnessing unintended drug off-target effects can reveal new vulnerabilities and lead to innovative precision medicine approaches for unmet needs.
Area of Science:
- Oncology
- Pharmacology
- Drug Discovery
Background:
- Precision medicine and targeted therapies have advanced cancer treatment but face challenges like resistance and high development costs.
- Drug repurposing emerges as a viable strategy to address the demand for novel cancer therapeutics.
- Many targeted drugs exhibit polypharmacology, interacting with multiple targets, presenting opportunities for repurposing.
Purpose of the Study:
- To explore experimental and computational methods for off-target drug repurposing in cancer.
- To discuss strategies for developing single-target and network-based repurposing approaches.
- To examine factors influencing the clinical translation of off-target drug repurposing.
Main Methods:
- Utilizing experimental and computational approaches to identify and leverage drug off-target effects.
- Developing single-target and network-based repurposing strategies, including drug combinations and polypharmacology.
- Analyzing case studies of clinically translated off-target repurposing efforts.
Main Results:
- Off-target interactions can uncover novel anticancer mechanisms and vulnerabilities.
- Drug repurposing, particularly through polypharmacology, can lead to new therapeutic strategies.
- Successful clinical translation of off-target strategies depends on various scientific and non-scientific factors.
Conclusions:
- Off-target drug repurposing is a promising avenue for developing novel precision cancer medicines.
- Understanding drug polypharmacology is key to unlocking new therapeutic opportunities.
- Further research into off-target mechanisms and repurposing strategies can address unmet needs in cancer therapy.
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