Evaluation of four in vitro genetic toxicity tests for predicting rodent carcinogenicity: Confirmation of earlier results with 41 additional chemicals
- 1 January 1990
- journal article
- research article
- Published by Wiley in Environmental and Molecular Mutagenesis
- Vol. 16 (S18) , 1-14
- https://doi.org/10.1002/em.2850160502
Abstract
The effectiveness of four in vitro short-term tests (STT) for genetic toxicity, induction of mutations in Salmonella (SAL) and mouse lymphoma L5178Y cells (MLA), and induction of sister chromatid exchanges (SCE) and chromosome aberrations (ABS) in Chinese hamster ovary cells that are used for predicting rodent carcinogenicity were examined. The in vitro results were compared with the results from 41 rodent carcinogenicity studies performed by the National Toxicology Program. The predictive values of, and interrelationships among, the STT for these 41 chemicals were similar to those previously reported for 73 chemicals and confirm those earlier results [Tennant RW, Margolin BH, Shelby MD, Zeiger E, Haseman JK, Spalding J, Caspary W, Resnick M, Stasiewicz S, Anderson B, Minor R (1987): Science 236:933-941]. Because of this similarity among the two datasets, the chemicals were combined into a single dataset of 114. The results with 114 chemicals show that SAL had the lowest sensitivity (.48) and the highest specificity (.91), whereas MLA had the highest sensitivity (.72) and the lowest specificity (.40). The concordances of the test results with rodent carcinogenicity were. 66, 0.61, 0.59, and 0.59, for SAL, ABS, SCE, and MLA, respectively. Salmonella was the most predictive for carcinogenicity; 89% of the chemicals mutagenic in SAL were carcinogenic in rodents, however a negative result in any or all of the STT was not indicative of noncarcino-genicity. The STT results reported here show good agreement with the potential electrophilicity of the chemicals, and the majority of carcinogens that are undetected by the STT do not have an electrophilic structure. There was no complementarity among the tests and no combination of the four tests was more effective than any single test for predicting carcinogenicity.Keywords
This publication has 28 references indexed in Scilit:
- Chromosome aberration and sister chromatid exchange test results with 42 chemicalsEnvironmental and Molecular Mutagenesis, 1990
- Classification according to chemical structure, mutagenicity to Salmonella and level of carcinogenicity of a further 42 chemicals tested for carcinogenicity by the U.S. National Toxicology ProgramMutation Research/Genetic Toxicology, 1989
- Chemical structure, Salmonella mutagenicity and extent of carcinogenicity as indicators of genotoxic carcinogenesis among 222 chemicals tested in rodents by the U.S. NCI/NTPMutation Research/Genetic Toxicology, 1988
- Workshop on the relationship between short‐term test information and carcinogenicity; williamsburg, virginia, january 20–23, 1987Environmental and Molecular Mutagenesis, 1988
- The influence of the proportion of carcinogens on the cost-effectiveness of short-term testsMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1988
- Evaluation of the l5178y mouse lymphoma cell mutagenesis assay: Quality-control guidelines and response categoriesEnvironmental Mutagenesis, 1988
- An approach to identifying specialized batteries of bioassays for specific classes of chemicals: Class analysis using mutagenicity and carcinogenicity relationships and phylogenetic concordance and discordance patterns 1. composition and analysis of the overall data base a report of phase II of the U.S. environmental protection agency gene-tox program (MTR 07213)Mutation Research/Reviews in Genetic Toxicology, 1987
- Short-term tests for carcinogens and mutagensMutation Research/Reviews in Genetic Toxicology, 1979
- An evaluation of 6 short-term tests for detecting organic chemical carcinogensBritish Journal of Cancer, 1978
- The Mutagenicity of Chemical Carcinogens: Correlations, Problems, and InterpretationsPublished by Springer Nature ,1971