Related Experiment Video
Updated: Jun 12, 2026

Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics
Published on: May 14, 2016
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
Introduction:
BAY-79 is an inhibitor of receptor tyrosine kinases with high selectivity versus other kinases. Species scaling, complicated by nonlinear pharmacokinetics, predicted a C(max.u) of 36-178nmol/L at the human efficacious exposure.
Methods:
Preclinical cardiovascular safety pharmacology studies assessed currents (hERG, I(Na)), action potential (AP, rabbit Purkinje fiber), hemodynamic/ECG parameters (anesthetized Beagle dogs, intravenous infusion), and proarrhythmic potential (rabbit Langendorff heart Screenit model).
Results:
Both hERG K(+) current and hNav1.5 Na(+) current were inhibited with low potency (IC(20)>10micromol/L). Purkinje fiber APs remained unaffected at 10micromol/L, but at 100micromol/L displayed reverse use-dependent AP duration shortening (APD(90)-33% at 1Hz) and triangulation. Infusion of BAY-79 into anesthetized dogs was associated with moderate hemodynamic effects (increased heart rate and diastolic blood pressure, reduced stroke volume) and marked QTcV shortening (-25ms) starting at approximately 0.65micromol/L (unbound); QRS was not changed. Assessment of the proarrhythmic potential in the Screenit model showed effects (AP duration shortening, triangulation, instability, reduced coronary flow, slowed conduction) at > or =30micromol/L (0.5h/concentration) and at 3micromol/L with longer exposure (2.5h/concentration).
Discussion:
BAY-79 at plasma concentrations slightly higher than those predicted to be therapeutically efficacious in humans is associated with QTc shortening in dogs but of unclear mechanistic basis. The QTc shortening associated proarrhythmic potential of BAY-79 together with other considerations finally resulted in an unfavorable risk-benefit assessment.
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.
Related Concept Videos
Clinical Trials: Overview
Targeted Cancer Therapies
There are several types of targeted therapies against specific...
Targeted Cancer Therapies
There are several types of targeted therapies against specific...
Treatment Resistent Cancers
Clinical Trials
There are four phases in a clinical trial. A phase one...
Combination Therapies and Personalized Medicine
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...
