Ocular toxicity of AUY922 in pigmented and albino rats

Danielle Roman1, James VerHoeve2, Heiko Schadt1

  • 1Preclinical Safety, Novartis Pharma AG, Basel, Switzerland.

Insights

AUY922, a heat shock protein 90 inhibitor, caused reversible retinal toxicity in rats, affecting photoreceptors. These findings in rats mirror patient outcomes, though the exact molecular cause remains unknown.

Area of Science:

  • Pharmacology
  • Toxicology
  • Ophthalmology

Background:

  • AUY922 is a heat shock protein 90 inhibitor.
  • Ocular adverse events (AEs) have been associated with AUY922 treatment.
  • Understanding these ocular AEs is crucial for patient safety.

Purpose of the Study:

  • To investigate the ocular adverse events of AUY922 in a preclinical rat model.
  • To assess the impact of AUY922 on retinal structure and function.
  • To characterize the reversibility and dose-dependency of AUY922-induced ocular toxicity.

Main Methods:

  • Four investigative studies were conducted in pigmented (Brown Norway) and albino (Wistar) rats.
  • Dose-ranging studies with AUY922 administration (≥30mg/kg).
  • Electroretinography (ERG) and histopathology were used to assess retinal function and structure.

Main Results:

  • AUY922 at ≥30mg/kg led to dose-dependent, reversible ERG changes indicative of photoreceptor effects.
  • Histopathological changes, including outer segment disorganization, were observed at 100mg/kg but were reversible.
  • No significant differences in ocular response were noted between rat strains.
  • No changes in key retinal proteins (rhodopsin, PDE6, transducin, RPE65) or serum iron were detected.

Conclusions:

  • AUY922 causes reversible retinal toxicity in rats, consistent with observations in patients.
  • The observed effects are dose-dependent and primarily impact photoreceptor structure and function.
  • While toxicity is reversible, the precise molecular mechanism underlying AUY922's ocular effects requires further investigation.