Identification of human Ether-à-go-go related gene modulators by three screening platforms in an academic

Xi-Ping Huang1, Thomas Mangano, Sandy Hufeisen

  • 1Department of Pharmacology, University of North Carolina at Chapel Hill, USA.

Insights

Drug interactions with the human Ether-à-go-go related gene (hERG) potassium channel can cause dangerous heart rhythm problems. This study compared drug screening methods to assess hERG channel activity and potential cardiac risks.

Area of Science:

  • Cardiovascular Pharmacology
  • Ion Channel Biology
  • Drug Safety Assessment

Background:

  • The human Ether-à-go-go related gene (hERG) potassium channel is crucial for cardiac repolarization.
  • hERG channel inhibition by drugs can lead to QT prolongation, ventricular arrhythmias, and sudden cardiac death.
  • FDA guidelines mandate evaluation of drug candidates for hERG activity.

Purpose of the Study:

  • To characterize the hERG channel activity of 49 drugs using multiple screening platforms.
  • To compare the potency of hERG inhibitors across different assay types.
  • To develop and validate novel assays for hERG drug interaction studies.

Main Methods:

  • Automated planar patch clamp (APPC)
  • High-throughput fluorescent thallium (Tl+) flux assays
  • [³H]dofetilide competition binding assays
  • Utilized a consistent HEK293-hERG cell line for all assays.

Main Results:

  • hERG inhibitors showed highest potency in APPC, intermediate in binding assays, and lowest in Tl+ flux assays.
  • Binding affinity and Tl+ flux potencies correlated well with APPC results.
  • Inhibitory potencies in APPC assays largely matched literature values.
  • A novel fluorescent Tl+ flux assay was developed to assess drug effects on hERG trafficking and surface expression.

Conclusions:

  • APPC, binding, and Tl+ flux assays provide comparable data for hERG activity assessment.
  • The developed fluorescent Tl+ flux assay offers a valuable tool for evaluating drug effects on hERG channel function and expression.
  • Comprehensive drug screening for hERG activity is essential for ensuring cardiac safety.