Carcinogenic effect of N-nitrosodimethylamine on diploid and triploid zebrafish (Danio rerio)

Igor V Mizgireuv1, Irina G Majorova, V M Gorodinskaya

  • 1Laboratory of Genetic Toxicology, N. N. Petrov Research Institute of Oncology, St. Petersburg 197758, Russia.

Toxicologic Pathology
|December 18, 2004
PubMed

Insights

Triploid zebrafish showed increased resistance to N-nitrosodimethylamine (NDMA) induced liver cancer, with delayed tumor development compared to diploid fish. This suggests ploidy influences carcinogenic mechanisms in vertebrates.

Area of Science:

  • Comparative genomics
  • Carcinogenesis research
  • Aquatic toxicology

Background:

  • Polyploid organisms, particularly fish, offer unique models for studying cancer development.
  • Understanding genetic mechanisms of neoplastic transformation is crucial for carcinogen risk assessment.

Purpose of the Study:

  • To investigate the differential sensitivity of diploid and triploid zebrafish (Danio rerio) to N-nitrosodimethylamine (NDMA) induced liver cancer.
  • To explore the role of ploidy in the development of specific liver tumor types.

Main Methods:

  • Exposing diploid and triploid zebrafish (5-6 weeks old) to 50 ppm NDMA for 8 weeks.
  • Monitoring tumor incidence (cholangiolar and hepatocellular) at 24 and 36 weeks post-treatment.
  • Comparing tumor types and latency periods between ploidy groups.

Main Results:

  • Cholangiolar tumors were primarily observed in diploid zebrafish at 24 weeks.
  • Hepatocellular tumor incidence was similar in both groups at 24 weeks (7.7% diploid vs. 9.5% triploid).
  • At 36 weeks, hepatocellular tumors were significantly lower in diploid (10.3%) vs. triploid (33.8%) zebrafish, while cholangiolar tumors showed no significant difference (10.3% diploid vs. 14.9% triploid).

Conclusions:

  • Increased ploidy in zebrafish differentially affects the induction of cholangiolar and hepatocellular liver tumors.
  • Triploid zebrafish exhibit delayed tumor development, suggesting increased resistance to NDMA's carcinogenic effects.
  • Ploidy variation in zebrafish provides insights into distinct genetic mechanisms underlying liver tumor development.

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