Mechanistic toxicogenomic analysis of WAY-144122 administration in Sprague-Dawley rats

R L Peterson1, L Casciotti, L Block

  • 1Discovery Medicine, Wyeth Research, Andover, MA 01810, USA.

Insights

Global gene expression profiling revealed WAY-144122

Area of Science:

  • Toxicology
  • Pharmacology
  • Molecular Biology

Background:

  • WAY-144122 exhibits pharmacological activity, improving insulin sensitivity and lipid profiles.
  • Suprapharmacological doses of WAY-144122 in rats caused liver and ovarian effects.
  • Understanding the molecular basis of drug toxicity is crucial for comprehensive interpretation.

Purpose of the Study:

  • To investigate the molecular mechanisms underlying WAY-144122-induced effects in rat liver and ovary.
  • To utilize global gene expression profiling to identify transcriptional changes.
  • To correlate gene expression alterations with observed physiological and histopathological effects.

Main Methods:

  • Global gene expression profiling was performed on liver and ovarian tissues from rats treated with WAY-144122 for 1, 3, 7, and 14 days.
  • RNA levels were measured to identify differentially expressed genes.
  • Functional categorization and biological activity analysis of altered genes were conducted.

Main Results:

  • WAY-144122 up-regulated genes involved in lipid mobilization, peroxisomal proliferation, and fatty acid beta-oxidation in the liver.
  • WAY-144122 down-regulated genes related to luteinizing hormone receptor, follistatin, and estradiol synthesis in the ovary.
  • Transcriptional changes preceded observable histopathological effects in both organs.

Conclusions:

  • Gene expression profiling identified molecular mechanisms for WAY-144122's effects, including increased hepatic metabolic activity and peroxisomal proliferation.
  • Decreased estradiol synthesis is proposed as the mechanism for ovarian follicular atrophy.
  • This study demonstrates the utility of gene expression profiling in predicting drug-induced physiological changes.