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Updated: Jul 15, 2026

Drug Repurposing Hypothesis Generation Using the "RE:fine Drugs" System
Published on: December 11, 2016
Shared molecular, cellular, and environmental hallmarks in cardiovascular disease and cancer: Any place for drug
Elisa Avolio1, Barbara Bassani2, Marzia Campanile3
1Bristol Heart Institute, Laboratory of Experimental Cardiovascular Medicine, Translational Health Sciences, Bristol Medical School, University of Bristol, United Kingdom.
Abstract:
Cancer and cardiovascular disease (CVD) are the 2 biggest killers worldwide. Specific treatments have been developed for the 2 diseases. However, mutual therapeutic targets should be considered because of the overlap of cellular and molecular mechanisms. Cancer research has grown at a fast pace, leading to an increasing number of new mechanistic treatments. Some of these drugs could prove useful for treating CVD, which realizes the concept of cancer drug repurposing. This review provides a comprehensive outline of the shared hallmarks of cancer and CVD, primarily ischemic heart disease and heart failure. We focus on chronic inflammation, altered immune response, stromal and vascular cell activation, and underlying signaling pathways causing pathological tissue remodeling. There is an obvious scope for targeting those shared mechanisms, thereby achieving reciprocal preventive and therapeutic benefits. Major attention is devoted to illustrating the logic, advantages, challenges, and viable examples of drug repurposing and discussing the potential influence of sex, gender, age, and ethnicity in realizing this approach. Artificial intelligence will help to refine the personalized application of drug repurposing for patients with CVD. SIGNIFICANCE STATEMENT: Cancer and cardiovascular disease (CVD), the 2 biggest killers worldwide, share several underlying cellular and molecular mechanisms. So far, specific therapies have been developed to tackle the 2 diseases. However, the development of new cardiovascular drugs has been slow compared with cancer drugs. Understanding the intersection between pathological mechanisms of the 2 diseases provides the basis for repurposing cancer therapeutics for CVD treatment. This approach could allow the rapid development of new drugs for patients with CVDs.
Insights
Repurposing cancer drugs offers a promising avenue for treating cardiovascular diseases (CVDs). Shared cellular mechanisms between cancer and CVD highlight opportunities for novel therapeutic strategies and faster drug development for patients.
Area of Science:
- Cardiovascular Research
- Oncology
- Translational Medicine
Background:
- Cancer and cardiovascular disease (CVD) are leading global causes of mortality.
- Distinct therapies exist, yet shared cellular and molecular pathways necessitate integrated approaches.
- Cancer drug development has advanced rapidly, presenting opportunities for repurposing.
Purpose of the Study:
- To review shared hallmarks between cancer and CVD, focusing on ischemic heart disease and heart failure.
- To explore the potential of repurposing cancer therapeutics for CVD treatment.
- To discuss the logic, benefits, challenges, and influencing factors of drug repurposing.
Main Methods:
- Comprehensive literature review of shared cancer and CVD mechanisms.
- Focus on chronic inflammation, immune response, stromal/vascular activation, and signaling pathways.
- Analysis of drug repurposing strategies, including influencing factors like sex, age, and ethnicity.
Main Results:
- Identified shared mechanisms including chronic inflammation, altered immune response, and pathological tissue remodeling.
- Highlighted the potential for targeting these shared pathways for reciprocal benefits.
- Discussed the role of artificial intelligence in personalizing drug repurposing for CVD.
Conclusions:
- Targeting shared mechanisms between cancer and CVD offers significant therapeutic potential.
- Cancer drug repurposing presents a viable strategy for accelerating CVD treatment development.
- Personalized approaches, considering diverse patient factors, are crucial for successful repurposing.
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