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Comparative histomorphometric changes in SENCAR mouse epidermis in response to multiple treatments with complete and
C S Baxter1, A Andringa, K Chalfin
1Department of Environmental Health, University of Cincinnati Medical Center, OH 45267-0056.
Abstract:
Responses of various cells of the epidermis and dermis to topically applied agents have been implicated in the mechanism of multistage mouse tumorigenesis. These responses have been discussed almost entirely in the context of a single promoter treatment, although tumor expression is dependent on multiple applications. Responses of keratinocytes, epidermal dendritic non-keratinocytes and dermal leukocytes were therefore recorded following multiple topical applications of the potent complete tumor-promoting agent 12-O-tetradecanoylphorbol-13-acetate (TPA). In order to assess the importance of the response of individual cell types to the mechanisms and stages of promotion, responses to TPA were compared with those to agents with low complete promoting activity, but significant activity in individual stages of multistage promotion models. These included 4-O-methyl-TPA, a stage 1 promoting agent, mezerein and n-dodecane, stage 2 promoting agents of apparently different mechanism of action, and ethyl phenylpropiolate (EPP), a highly inflammatory stage 3 promoting agent. In agreement with previous findings, TPA induced a persistent epidermal hyperplasia and an increase in dark keratinocytes, although a similar finding was made for EPP and n-dodecane. The response to n-dodecane was significantly delayed, however, and that to EPP was accompanied by focal epidermal destruction and inflammation. The response to n-dodecane contrasted with that found for mezerein, supporting the suggestion that their mechanisms of action are distinct. Multiple treatments of 4-O-methylTPA caused no increase in dark cells, and mezerein induced no increase in numbers of pyknotic cells, whereas increases were expected in both cases on the basis of single dose experiments. Of the agents examined, only TPA induced a decrease in pale dendritic epidermal cells in the absence of marked toxicity, supporting the previous proposal that prolonged effects on this cell type are important in the promotion process. Some degree of persistent dermal leukocyte infiltration was observed with all agents excepting 4-O-methylTPA, although the extent of the response and its cellular characteristics appeared strongly dependent on the agent applied. In the case of TPA small mononuclear cells, neutrophils and macrophages all provided significant contributions to the total infiltrate. A similar phenomenon was observed with n-dodecane and EPP, with an additional increase in eosinophils which was not observed with TPA. Mezerein differed from both TPA and n-dodecane in inducing a significant increase only in eosinophils. As reported previously for single applications, prolonged TPA application caused a change in morphology and a considerable decrease in numbers of Thy-1+ epidermal dendritic cells.(ABSTRACT TRUNCATED AT 400 WORDS)
Insights
Multiple topical applications of 12-O-tetradecanoylphorbol-13-acetate (TPA) and other agents reveal distinct cellular responses in mouse skin promotion. TPA uniquely reduces pale dendritic cells, crucial for tumor promotion.
Area of Science:
- Dermatology
- Oncology
- Cell Biology
Background:
- Multistage mouse tumorigenesis involves epidermal and dermal cell responses to topical agents.
- Tumor promotion is dependent on multiple applications, yet responses are often studied after single treatments.
Purpose of the Study:
- To investigate cellular responses in mouse skin following multiple topical applications of tumor promoters.
- To compare the effects of 12-O-tetradecanoylphorbol-13-acetate (TPA) with agents acting on specific stages of promotion.
Main Methods:
- Multiple topical applications of TPA, 4-O-methyl-TPA, mezerein, n-dodecane, and ethyl phenylpropiolate (EPP) on mouse skin.
- Recording responses of keratinocytes, epidermal dendritic non-keratinocytes, and dermal leukocytes.
- Assessing epidermal hyperplasia, cell morphology, and leukocyte infiltration.
Main Results:
- TPA induced persistent epidermal hyperplasia and decreased pale dendritic cells, unlike other agents.
- Different agents elicited varied dermal leukocyte infiltration patterns, including mononuclear cells, neutrophils, macrophages, and eosinophils.
- Responses to agents like n-dodecane and EPP showed delayed or destructive effects, contrasting with mezerein.
Conclusions:
- Prolonged effects on pale dendritic epidermal cells are critical for tumor promotion.
- Distinct cellular responses highlight the specific mechanisms of different promoting agents.
- Understanding these cell-type specific responses is key to elucidating multistage tumorigenesis.