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Carcinogenic susceptibility to N-bis(2-hydroxypropyl)nitrosamine (DHPN) in rasH2 mice
Miwa Okamura1, Mitsuyoshi Moto, Yoko Kashida
1Laboratory of Veterinary Pathology, Tokyo University of Agriculture and Technology, Tokyo 183-8509, Japan. mokamura@cc.tuat.ac.jp
Abstract:
To evaluate the susceptibility of rasH2 mice to N-bis(2-hydroxypropyl)nitrosamine (DHPN), a potent carcinogen targeting the lung, liver, thyroid, and kidney, male, 6-week old, rasH2 mice and wild-type littermates (non-Tg mice) were given DHPN in drinking water at 0, 20 or 200 ppm, and 0 or 200 ppm, respectively, for 26 weeks. The experiment using rasH2 mice given 200 ppm DHPN and non-Tg mice given 200 and 0 ppm DHPN was completed at 20 weeks, since mortality in these groups was remarkably increased due to hemangiosarcomas of the liver. Histologically, tumors developed in the lung and liver in both rasH2 and non-Tg mice treated with DHPN. In addition, proliferative lesions were observed in the forestomach, urethra, and excretory duct of salivary glands in rasH2 mice given 200 ppm DHPN. RT-PCR analysis showed no marked difference in expression of mRNAs for the transgene and the endogenous mouse ras gene between the whole lung tissue containing a neoplasm and normal lung tissue. Our results suggest that rasH2 mice are highly susceptible to DHPN, the target organs including the forestomach, salivary gland and urethra, which have not been found to develop tumors in previous long-term carcinogenicity studies of DHPN in rats and mice.
Insights
RasH2 mice show high susceptibility to N-bis(2-hydroxypropyl)nitrosamine (DHPN), developing tumors in new target organs like the forestomach and urethra. This indicates rasH2 mice are a sensitive model for DHPN carcinogenicity studies.
Area of Science:
- Toxicology
- Carcinogenesis
- Genetics
Background:
- N-bis(2-hydroxypropyl)nitrosamine (DHPN) is a known carcinogen.
- RasH2 mice are genetically engineered mice used in carcinogenicity studies.
Purpose of the Study:
- To evaluate the susceptibility of rasH2 mice to DHPN.
- To identify novel target organs for DHPN-induced tumors in rasH2 mice.
Main Methods:
- Male rasH2 and wild-type mice were administered DHPN (0, 20, or 200 ppm) in drinking water for 20-26 weeks.
- Tumor development and histopathological changes were assessed.
- RT-PCR was used to analyze gene expression.
Main Results:
- RasH2 mice exhibited increased susceptibility to DHPN, with higher mortality due to liver hemangiosarcomas at 200 ppm.
- Tumors were observed in the lung and liver in both mouse models.
- Proliferative lesions, including tumors, were identified in the forestomach, urethra, and salivary glands of rasH2 mice.
Conclusions:
- RasH2 mice are highly susceptible to DHPN.
- The forestomach, salivary gland, and urethra are novel target organs for DHPN-induced tumors in rasH2 mice.
- RasH2 mice represent a sensitive model for studying DHPN carcinogenicity.
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