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Updated: Jan 25, 2026

Assessing Specificity of Anticancer Drugs In Vitro
Published on: March 23, 2016
Extended Multitarget Pharmacology of Anticancer Drugs
Da Shi1, Feroz Khan2, Ruben Abagyan1
1Skaggs School of Pharmacy and Pharmaceutical Sciences , University of California, San Diego , La Jolla , California 92093-0747 , United States.
Abstract:
Multitarget pharmacology of small-molecule cancer drugs significantly contributes to their mechanism of action, side effects, and emergence of drug resistance and opens ways to repurpose, combine, or customize drug therapy. In most cases, the set of targets affected at therapeutic concentrations is not fully characterized and/or the interaction efficacy values are not accurately quantified. We collected information about multiple targets for each cancer drug along with their experimental effective concentrations or binding activities from multiple sources. All multitarget activity values for each drug then were used to build two proximity network pharmacology maps of anticancer drugs and targets of those drugs, respectively. Together with the network map, we showed that the majority of the cancer drugs had substantial multitarget pharmacology based on our current knowledge. In addition, most of the cancer drugs simultaneously affect macromolecular targets from different classes and types. The target subset can further be accentuated and personalized by patient sample-specific expression data. The network maps of cancer drugs and targets as well as all quantified activity data were integrated into a freely available database, CancerDrugMap (http://ruben.ucsd.edu/dnet/maps/drugnet.html). The identified multitarget pharmacology of cancer drugs is essential for improving the efficacy of individually prescribed drugs and drug combinations and minimization of adverse effects.
Insights
Most cancer drugs affect multiple targets, influencing efficacy and side effects. Understanding this multitarget pharmacology aids in personalized cancer drug therapy and reduces adverse events.
Area of Science:
- Pharmacology
- Computational Biology
- Oncology
Background:
- Multitarget pharmacology is crucial for understanding cancer drug mechanisms, side effects, and resistance.
- The full spectrum of drug targets and their interaction efficacies are often not well-characterized.
Purpose of the Study:
- To comprehensively characterize the multitarget pharmacology of small-molecule cancer drugs.
- To create network maps and a database for visualizing and analyzing drug-target interactions.
Main Methods:
- Collected data on multiple targets and experimental activities for numerous cancer drugs from various sources.
- Constructed proximity network pharmacology maps for anticancer drugs and their targets.
- Integrated quantified activity data and network maps into the CancerDrugMap database.
Main Results:
- The majority of cancer drugs exhibit significant multitarget pharmacology.
- Most drugs interact with macromolecular targets across different classes and types.
- Network maps visually represent complex drug-target relationships.
Conclusions:
- Understanding multitarget pharmacology is key to improving cancer drug efficacy and minimizing side effects.
- Personalization of drug therapy is possible by integrating patient-specific data.
- The CancerDrugMap database provides a valuable resource for cancer drug research.
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