Renal papillary necrosis and urinary protein alterations induced in Fischer-344 rats by D-ormaplatin

G J Kolaja1, W H Packwood, R R Bell

  • 1Drug Safety Research, Upjohn Company, Kalamazoo, Michigan 49001.

Toxicologic Pathology
|January 1, 1994
PubMed

Insights

D-ormaplatin causes dose-related kidney damage, specifically renal papillary necrosis, in rats. While some kidney function markers were altered, the damage showed signs of repair within nine days in lower dose groups.

Area of Science:

  • Nephrology
  • Toxicology
  • Pharmacology

Background:

  • D-ormaplatin, a platinum-based chemotherapy agent, is being evaluated for its therapeutic potential.
  • Understanding its toxicological profile, particularly nephrotoxicity, is crucial for clinical application.

Purpose of the Study:

  • To investigate the dose-related renal toxicity of D-ormaplatin in Fischer-344 rats.
  • To characterize the temporal changes in kidney function and morphology following D-ormaplatin administration.

Main Methods:

  • Intravenous administration of D-ormaplatin at doses of 2, 4, and 9 mg/kg to Fischer-344 rats.
  • Assessment of renal papillary necrosis, kidney weights, body weights, and clinical chemistry parameters (blood urea nitrogen, creatinine clearance).
  • Analysis of urinary proteins using SDS-PAGE and measurement of specific urinary markers like N-acetyl-beta-glucosaminidase (NAG) and alpha 1-microglobulin.

Main Results:

  • D-ormaplatin induced dose-related renal papillary necrosis, most severe at day 4 and showing repair by day 9 at lower doses.
  • Elevated blood urea nitrogen, increased NAG:creatinine ratio, and decreased creatinine clearance were observed at day 4.
  • Urinary protein analysis revealed increased excretion of high molecular weight proteins, suggesting glomerular filtration of albumin and transferrin.

Conclusions:

  • D-ormaplatin exhibits significant nephrotoxicity, primarily affecting the renal papilla.
  • Proximal tubules were affected, as indicated by elevated NAG:creatinine ratio, but were not the main site of toxicity.
  • SDS-PAGE is a valuable tool for detecting and localizing D-ormaplatin-induced renal toxicity when combined with morphologic and clinical chemistry data.

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