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Updated: Jul 17, 2026

Identification of Sleeping Beauty Transposon Insertions in Solid Tumors using Linker-mediated PCR
Published on: February 1, 2013
Transgenic tumor models for carcinogen identification: the heterozygous Trp53-deficient and RasH2 mouse lines
R D Storer1, J E French, L A Donehower
1Department of Genetic and Cellular Toxicology, Merck Research Laboratories, WP45-311, West Point, PA 19486, USA. richard_storer@merck.com
Abstract:
Genetically altered mouse models (GAMM) for human cancers have been critical to the investigation and characterization of oncogene and tumor suppressor gene expression and function and the associated cancer phenotype. Similarly, several of the mouse models with defined genetic alterations have shown promise for identification of potential human carcinogens and investigation of mechanisms of carcinogen-gene interactions and tumorigenesis. In particular, both the B6.129N5-Trp53 mouse, heterozygous for a p53 null allele, and the CB6F1-RasH2 mouse, hemizygous for the human H-ras transgene, have been extensively investigated. Using 26-week exposure protocols at or approaching the maximum tolerated dose, the summary results to date indicate the potential for GAMM to identify and, possibly, classify chemicals of potential risk to humans using short-term carcinogenicity experiments. This IWGT session focused on: (1) the development of recommendations for genetic/molecular characterization required in animals, tissues, and tumors before and after treatment for identification of presumptive human carcinogens based on the current state of knowledge, (2) identification of data gaps in our current state of knowledge, and (3) development of recommendations for research strategies for further development of our knowledge base of these particular models. By optimization of protocols and identification of significant outcomes and responses to chemical exposure in appropriate short-term mechanism-based genetically altered rodent models, strategies for prevention and intervention may be developed and employed to the benefit of public health.
Insights
Genetically altered mouse models (GAMM) show promise for identifying human carcinogens in short-term studies. Further research will optimize protocols and enhance understanding of chemical interactions for public health benefits.
Area of Science:
- Oncology
- Toxicology
- Genetics
Background:
- Genetically altered mouse models (GAMM) are crucial for studying human cancer genetics and phenotypes.
- These models aid in identifying potential human carcinogens and understanding carcinogen-gene interactions.
- Specific models like B6.129N5-Trp53 and CB6F1-RasH2 mice are extensively studied.
Purpose of the Study:
- To develop recommendations for genetic/molecular characterization in GAMM for carcinogen identification.
- To identify knowledge gaps in the current understanding of GAMM in carcinogenicity testing.
- To propose research strategies for advancing the use of GAMM in toxicological studies.
Main Methods:
- Utilizing 26-week exposure protocols at or near maximum tolerated dose in GAMM.
- Focusing on genetic and molecular characterization of animals, tissues, and tumors before and after chemical exposure.
- Investigating short-term, mechanism-based carcinogenicity experiments.
Main Results:
- GAMM demonstrate potential for identifying and classifying chemical risks to humans through short-term carcinogenicity experiments.
- The study session aimed to establish standardized characterization protocols for GAMM.
- Preliminary results suggest the utility of GAMM in predicting human carcinogens.
Conclusions:
- Optimization of protocols and identification of significant responses in GAMM can aid in developing prevention and intervention strategies.
- Further research is needed to fill knowledge gaps and refine the application of GAMM in toxicology.
- GAMM hold significant potential for improving public health through enhanced carcinogen risk assessment.
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