QTc shortening with a new investigational cancer drug: a brief case study

Herbert M Himmel1, Michael Hoffmann

  • 1Safety Pharmacology, Bayer Schering Pharma AG, Wuppertal, Germany. herbert.himmel@bayerhealthcare.com

Abstract

Insights

BAY-79, a kinase inhibitor, showed potential for cardiac issues like QTc shortening and proarrhythmia in preclinical safety studies. These findings led to an unfavorable risk-benefit assessment for human use.

Area of Science:

  • Cardiovascular Pharmacology
  • Drug Safety Assessment
  • Clinical Pharmacology

Background:

  • BAY-79 is a selective receptor tyrosine kinase inhibitor.
  • Predicted human efficacious exposure levels were determined via species scaling.

Purpose of the Study:

  • To assess the preclinical cardiovascular safety of BAY-79.
  • Evaluate potential proarrhythmic effects and ion channel inhibition.

Main Methods:

  • Conducted in vitro assays for hERG and hNav1.5 currents.
  • Performed in vivo hemodynamic and ECG studies in dogs.
  • Utilized a rabbit Langendorff heart model for proarrhythmic potential assessment.

Main Results:

  • BAY-79 showed low potency inhibition of hERG and hNav1.5 currents.
  • In dogs, BAY-79 caused QTc shortening and hemodynamic changes.
  • Proarrhythmic effects were observed in the Langendorff model at higher concentrations and longer exposures.

Conclusions:

  • BAY-79 is associated with QTc shortening in dogs, with an unclear mechanism.
  • Preclinical findings indicated proarrhythmic potential.
  • An unfavorable risk-benefit assessment led to concerns regarding human therapeutic use.

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