Quantitative gene expression analysis in a nonhuman primate model of antibiotic-induced nephrotoxicity

John W Davis1, Federico M Goodsaid, Christopher M Bral

  • 1Division of Drug Safety and Metabolism, Schering-Plough Research Institute, Lafayette, NJ 07848, USA. john.w.1.davis@pharmacia.com

Insights

This study confirms rodent gene expression changes in cynomolgus monkeys exposed to nephrotoxicants. Early gene biomarkers were identified, predicting drug-induced kidney damage.

Area of Science:

  • Toxicology
  • Genomics
  • Primate Research

Background:

  • Rodent models have provided insights into gene expression changes during nephrotoxicity.
  • The applicability of these findings across species remains to be fully elucidated.

Purpose of the Study:

  • To investigate if previously identified gene expression changes in rodent nephrotoxicity models are applicable to nonhuman primates.
  • To identify early gene biomarkers predictive of drug-induced kidney damage in cynomolgus monkeys.

Main Methods:

  • Cynomolgus monkeys were exposed to gentamicin, everninomicin, or a combination for 7 days.
  • Quantitative real-time PCR was used to measure gene expression.
  • Logistic regression analyzed the correlation between gene expression and renal lesions.

Main Results:

  • Drug combinations and high-dose everninomicin induced renal lesions and damage.
  • Gene expression changes for waf-1, matrix metalloproteinase-9, and vimentin were confirmed.
  • Clusterin, osteopontin, and hepatitis A virus cellular receptor-1 emerged as potential early biomarkers for nephrotoxicity.

Conclusions:

  • Confirms rodent-based gene expression changes in a nonhuman primate model of nephrotoxicity.
  • Identifies potential early gene biomarkers for predicting drug-induced renal tubular damage in cynomolgus monkeys.
  • Highlights the utility of gene expression profiling in toxicological assessments across species.

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