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Updated: Jan 1, 2026

A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Cardiovascular Toxicity Induced by Kinase Inhibitors: Mechanisms and Preclinical Approaches
Sarah D Lamore1, Rebecca A Kohnken2, Matthew F Peters3
1Preclinical Development , Wave Life Sciences , Lexington , Massachusetts 02421 , United States.
Abstract:
Kinase inhibitors have transformed the treatment of many cancers and are showing the same promise for other indications including inflammatory diseases. This class of drugs is one of the most predominant in the pharmaceutical industry, but development and clinical utility is often limited by a broad spectrum of cardiovascular (CV) toxicities including QT prolongation and arrhythmia, left ventricular dysfunction, congestive heart failure, ischemia and myocardial infarction, and hypertension. In this review article, we provide a broad overview of the spectrum of CV events detected in clinical trials of kinase inhibitors and the known and proposed on- and off-target links between kinase inhibitor targets and these specific cardiotoxicities. We also examine the unique features of kinase inhibitors that have impeded complete mechanistic understanding of kinase inhibitor-associated cardiotoxicities and contributed to the disconnect between preclinical predictions and clinical findings. We then discuss various in vitro models currently in use that are amenable for high-throughput screening as well as lower throughput models that are valuable for mechanistic insight. These physiologically relevant models, together with newer "omic"-wide approaches will help to increase our understanding of the mechanisms underlying kinase inhibitor-associated cardiotoxicity and enable rational design of kinase inhibitors in the future.
Insights
Kinase inhibitors offer cancer treatment promise but can cause cardiovascular toxicities. Understanding these effects is crucial for developing safer drugs and improving patient outcomes.
Area of Science:
- Pharmacology
- Cardiology
- Oncology
Background:
- Kinase inhibitors are vital in cancer and inflammatory disease treatment.
- Cardiovascular toxicities, including heart failure and hypertension, limit their clinical utility.
- Understanding the mechanisms of these cardiotoxicities is essential.
Purpose of the Study:
- To review cardiovascular events associated with kinase inhibitors in clinical trials.
- To explore on- and off-target mechanisms linking kinase inhibitors to cardiotoxicity.
- To discuss current and future models for studying kinase inhibitor-associated cardiotoxicity.
Main Methods:
- Review of clinical trial data on kinase inhibitor-associated cardiovascular events.
- Analysis of proposed on- and off-target molecular mechanisms.
- Evaluation of in vitro and omics-based approaches for mechanistic insight.
Main Results:
- Kinase inhibitors are linked to a wide spectrum of cardiovascular toxicities.
- The precise mechanisms underlying these cardiotoxicities are not fully understood.
- Preclinical models often fail to predict clinical cardiotoxicity.
Conclusions:
- Further research using advanced in vitro and omics models is needed.
- Improved mechanistic understanding will enable rational drug design.
- Mitigating cardiovascular risks is key to maximizing kinase inhibitor benefits.
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