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Mechanistic relationship among mutagenicity, skin sensitization, and skin carcinogenicity
J Ashby1, J Hilton, R J Dearman
1ICI Central Toxicology Laboratory, Alderley Park, Macclesfield, Cheshire, UK.
Abstract:
Twenty organic Salmonella mutagens, seven of which (including benzo[a]pyrene) are established skin carcinogens, and one of which (2-chloroethanol) is a well-defined noncarcinogen to skin, have been evaluated for skin-sensitizing activity using the local lymph node assay. The relative mutagenicity of the agents to Salmonella was also established. Fourteen of the chemicals were positive in the local lymph node assay, including the seven skin carcinogens. 2-Chloroethanol was inactive as a sensitizing agent. We suggest that a variety of factors contributes to the lack of sensitizing activity of the remaining six bacterial mutagens: extremes of intrinsic chemical reactivity, high water solubility reducing dermal translocation, and inappropriate dermal metabolism. Two reference skin-sensitizing agents (an oxazolinone and fluorescein isothiocyanate) were established as in vitro clastogens after their recognition as nonmutagens to Salmonella. These data imply that mutagenicity, rather than simply activity in the Salmonella assay, is a primary stimulus for electrophilic sensitization and carcinogenic initiation in the skin. We conclude that genotoxicity data for an agent can provide indications of the agent's potential to induce skin sensitization and that genotoxins which are skin-sensitizing agents have an enhanced potential to initiate skin carcinogenesis. We suggest that common, albeit individually distinct, structure-activity relationships underpin genotoxicity, skin sensitization, and the initiation of skin carcinogenesis. These relationships should simplify the hazard evaluation of chemicals and contribute to a reduction in animal usage. Several predictions of skin carcinogenicity are made based on the data presented.
Insights
This study found that mutagenicity, not just Salmonella assay results, predicts skin sensitization and cancer initiation. Genotoxicity data can indicate skin sensitization potential, aiding chemical hazard evaluation and reducing animal testing.
Area of Science:
- Toxicology
- Dermatology
- Chemical Carcinogenesis
Background:
- Skin sensitization and carcinogenesis are complex processes.
- The relationship between mutagenicity and skin effects is not fully understood.
- Evaluating chemical hazards requires robust predictive models.
Purpose of the Study:
- To assess the skin-sensitizing activity of organic Salmonella mutagens.
- To correlate mutagenicity with skin sensitization and carcinogenicity.
- To explore structure-activity relationships for genotoxicity, sensitization, and carcinogenesis.
Main Methods:
- Local lymph node assay (LLNA) for skin sensitization.
- Salmonella mutagenicity assay.
- Evaluation of established skin carcinogens and noncarcinogens.
Main Results:
- 14 of 20 Salmonella mutagens were positive in the LLNA, including 7 skin carcinogens.
- 2-chloroethanol was negative for sensitization.
- Reference sensitizers were clastogenic but not Salmonella mutagens.
Conclusions:
- Mutagenicity is a key driver for electrophilic sensitization and skin cancer initiation.
- Genotoxicity data can predict skin sensitization potential.
- Common structure-activity relationships link genotoxicity, skin sensitization, and carcinogenesis initiation, potentially reducing animal use.