Tg.AC genetically altered mouse: assay working group overview of available data

W C Eastin1, J H Mennear, R W Tennant

  • 1National Institute of Environmental Health Sciences, National Toxicology Program, Research Triangle Park, North Carolina 27713-2233, USA. eastin@niehs.nih.gov

Toxicologic Pathology
|November 7, 2001
PubMed

Insights

The Tg.AC mouse model showed varied responses to carcinogens, proving useful for identifying potential human carcinogens. This alternative testing approach aids in understanding carcinogenicity and assessing human risk.

Area of Science:

  • Toxicology
  • Genetics
  • Carcinogenicity Testing

Background:

  • Pharmaceutical agents with known carcinogenic potential were evaluated using alternative testing models.
  • The Tg.AC genetically manipulated mouse model was chosen for its responsiveness to carcinogen application.
  • Previous studies suggested Tg.AC mice develop papillomas upon topical carcinogen exposure.

Purpose of the Study:

  • To evaluate the utility of the Tg.AC mouse model in carcinogenicity testing.
  • To assess the sensitivity and limitations of the Tg.AC model in identifying human and rodent carcinogens.
  • To compare Tg.AC mouse responses to topical and oral administration of various chemicals.

Main Methods:

  • 14 chemicals were administered to Tg.AC mice via topical and oral routes (gavage and/or diet).
  • Chemicals included known human carcinogens (e.g., Cyclosporin A, ethinyl estradiol, diethylstilbestrol) and rodent carcinogens.
  • Responses were reviewed by an Assay Working Group (AWG) of toxicology and pathology experts.

Main Results:

  • Topical administration showed clear positive responses for Cyclosporin A, ethinyl estradiol, diethylstilbestrol, and clofibrate.
  • Oral administration yielded negative results for ethinyl estradiol and diethylstilbestrol, and equivocal for Cyclosporin A.
  • Phenacetin was negative for both routes; melphalan and cyclophosphamide showed equivocal topical responses. Most rodent carcinogens did not elicit tumor responses.

Conclusions:

  • The Tg.AC mouse model demonstrated utility as an adjunct for carcinogenicity testing.
  • The model was not overly sensitive, providing valuable data for human carcinogenic risk assessment.
  • Further data is needed to fully understand the model's limitations and sensitivity across different chemical classes and exposure routes.