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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.

Carcinogenesis
|October 1, 1989
PubMed

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.

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