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Updated: May 15, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Non-melanoma skin cancer in mouse and man
Michael Schwarz1, Peter A Münzel, Albert Braeuning
1Institute of Experimental and Clinical Pharmacology and Toxicology, University of Tübingen, Wilhelmstr. 56, 72074, Tübingen, Germany. michael.schwarz@uni-tuebingen.de
Abstract:
As a frontier organ, skin is exposed to different environmental and/or occupational chemicals which cause cutaneous cancers in experimental animals. In mice, 7,12-dimethylbenz[a]anthrancene (DMBA) and the phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA) are frequently used as skin model tumor initiator and promoter, respectively. The sequential administration of DMBA and TPA leads to the appearance of a large number of benign papillomas, of which some convert later into invasive squamous cell carcinomas (SCC). At the molecular level, initiation of carcinogenesis in mouse skin consists in the mutational activation of the Ha-ras oncoprotein. HA-RAS mutations are rare in human SCC, but HA-RAS-mutated tumors appear in melanoma patients treated with B-raf inhibitors, indicating that initiated, HA-RAS-mutated stem cells also reside in human skin. Similarly, UV-induced human SCC show footprint mutations in the tumor suppressor gene TP53 which are also observed in UV-induced mouse SCC. Strong species differences exist with respect to phorbol ester-mediated tumor promotion. While certain mouse strains are very susceptible, other rodent species are much less sensitive. Likewise, humans appear to be much more resistant to phorbol ester-mediated skin toxicity. Papilloma formation as a result of a chemical insult is uncommon in men, questioning the relevance of this preneoplastic lesion for humans. However, skin tumorigenesis in the experimental situation and in humans appears to follow common molecular mechanisms, even though there are species differences in the morphological correlates to the preneoplastic state. Therefore, we recommend not simply labeling them as irrelevant for human risk assessment.
Insights
Mouse skin cancer models using 7,12-dimethylbenz[a]anthracene (DMBA) and 12-O-tetradecanoylphorbol-13-acetate (TPA) share molecular mechanisms with human skin tumors. Despite species differences in tumor promotion, these models are valuable for human risk assessment.
Area of Science:
- Dermatology
- Toxicology
- Molecular Carcinogenesis
Background:
- The skin, as a primary interface with the environment, is susceptible to chemical carcinogens.
- Chemicals like 7,12-dimethylbenz[a]anthracene (DMBA) and 12-O-tetradecanoylphorbol-13-acetate (TPA) are used to induce skin tumors in mice.
- This process involves tumor initiation and promotion, leading to squamous cell carcinomas (SCC).
Purpose of the Study:
- To investigate the molecular mechanisms of skin carcinogenesis in experimental models.
- To compare these mechanisms with human skin cancer development.
- To evaluate the relevance of mouse skin tumor models for human risk assessment.
Main Methods:
- Utilizing DMBA as a tumor initiator and TPA as a promoter in mouse skin models.
- Analyzing molecular alterations, including mutations in Ha-ras and TP53 genes.
- Comparing findings with human skin SCC and UV-induced lesions.
Main Results:
- Mouse skin carcinogenesis involves Ha-ras activation, a mechanism also implicated in human tumors.
- UV-induced mouse and human SCC share TP53 mutations.
- Species-specific differences exist in phorbol ester-mediated tumor promotion and papilloma formation.
Conclusions:
- Mouse skin cancer models exhibit common molecular pathways with human skin tumorigenesis.
- Despite morphological differences in preneoplastic lesions, shared molecular mechanisms support their relevance.
- These models are crucial for understanding human skin cancer and risk assessment, necessitating careful consideration beyond simple species comparisons.
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