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.

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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