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Zebrafish as a Model to Assess the Teratogenic Potential of Nitrite
Published on: February 16, 2016
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.
Abstract:
Viability of polyploid organisms in lower vertebrates including fish provides an additional tool to investigate genetic mechanisms of neoplastic transformation caused by carcinogens. Here we present data on differential sensitivity of diploid and triploid zebrafish (Danio rerio) to N-nitrosodimethylamine (NDMA) induced hepatocarcinogenesis. The effect of the carcinogen was studied in 100 diploid and 120 triploid zebrafish. Zebrafish, age 5-6 weeks, were exposed to 50 ppm NDMA for 8 weeks and then were transferred into fresh carcinogen-free water until necropsy. At the necropsy performed 24 weeks after beginning the treatment, cholangiolar tumors (cholangiocarcinomas and cholangiomas) were essentially observed in diploid zebrafish only, while the incidence of hepatocellular tumors (hepatocellular carcinomas and adenomas) was similar in diploid and triploid zebrafish, 7.7% and 9.5%, respectively. By contrast, 36 weeks after beginning the treatment, the incidence of hepatocellular tumors was significantly lower in diploid animals as compared to triploid ones, 10.3% and 33.8%, respectively. The incidence of cholangiolar tumors in diploid and triploid zebrafish was not significantly different, 10.3% and 14.9%, respectively. Therefore, the increase of ploidy appeared to have a differential effect on the induction of these 2 types of liver tumors in zebrafish. This finding suggests a difference in genetic mechanisms of the tumor development revealed by utilization of triploid animals in this study. However, triploid zebrafish demonstrated an overall increase in latency period in the development of both types of hepatic tumors, a finding that can be interpreted as an increased resistance of triploid animals to the carcinogenic effect of NDMA.
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.

