New phenotypic cytotoxicity assay for ROS-inducing compounds using rat renal epithelial cells

Noriko Uchiyama1, Tomoya Yukawa1, Yvonne P Dragan1

  • 1Global Drug Safety Research Evaluation, Takeda Pharmaceutical Company Ltd., Pharmaceutical Research Division, 40 Landsdowne Street, Cambridge, MA, 02139, United States.

Toxicology Letters
|June 12, 2020
PubMed

Insights

Drug toxicity varies by cell type, with NRK52E cells showing sensitivity to compounds not affecting HepG2 cells. Combining cell viability data improves in vivo toxicity prediction, highlighting NRK52E assays for NOX-mediated oxidative stress.

Area of Science:

  • Toxicology
  • Cell Biology
  • Pharmacology

Background:

  • Chemical toxicity often involves oxidative stress from excess reactive oxygen species (ROS).
  • Drug-induced ROS production can differ significantly between cell lines.
  • NRK52E and HepG2 cells exhibit differential responses to various compounds.

Purpose of the Study:

  • To investigate differential drug-induced ROS production and cytotoxicity between NRK52E and HepG2 cells.
  • To elucidate the mechanism of nifedipine-induced toxicity in NRK52E cells.
  • To evaluate the utility of combined cell line data for predicting in vivo toxicity.

Main Methods:

  • Assessed in vitro ROS production and cell viability in NRK52E and HepG2 cells following drug treatment.
  • Utilized NOX inhibitor (GKT136901) and mitochondrial inhibitor (rotenone) to probe nifedipine's mechanism.
  • Screened marketed drugs and Takeda proprietary compounds for differential cytotoxicity.

Main Results:

  • Nifedipine induced ROS and decreased viability in NRK52E cells, but not HepG2 cells, via a NOX-mediated pathway.
  • Over 15% of compounds non-cytotoxic to HepG2 cells were cytotoxic to NRK52E cells.
  • Combined cell viability data from both cell lines improved prediction of in vivo toxicity.

Conclusions:

  • NRK52E cell viability assays are predictive of NOX-mediated ROS production.
  • Using both NRK52E and HepG2 cell data enhances the prediction of in vivo drug toxicity.
  • This approach aids in selecting compounds with better safety profiles for further studies.

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