Cancer Research Cancer Epigenetics  Protein Translation and Cancer
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[Cancer Research 59, 474-481, January 1, 1999]
© 1999 American Association for Cancer Research

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[Cancer Research 59, 474-481, January 15, 1999]
© 1999 American Association for Cancer Research


Tumor Biology

12-O-Tetradecanoylphorbol-13-acetate Induces Clonal Expansion of Potentially Malignant Keratinocytes in a Tissue Model of Early Neoplastic Progression1

Jeffrey Karen, Youai Wang, Ashkan Javaherian, Michael Vaccariello, Norbert E. Fusenig and Jonathan A. Garlick2

Department of Oral Biology and Pathology, School of Dental Medicine, SUNY at Stony Brook, Stony Brook, New York 11794-8702 [J. K., Y. W., A. J., M. V., J. A. G.], Department of Dermatology, School of Medicine, SUNY at Stony Brook, Stony Brook, New York 11794 (J. A. G.), and German Cancer Research Center, Division of Differentiation and Carcinogenesis, D-69120 Heidelberg, Germany [N. E. F.]

Tumor promoters stimulate the selective expansion of initiated mouse keratinocytes in the two-stage model of skin carcinogenesis. However, it is not clear whether these promoters directly modulate the growth of initiated cells or rather permit clonal expansion of initiated cells by modifying the environment of adjacent normal cells. The goal of this study was to further understand the mechanism of action of tumor promotion during early neoplastic progression of human stratified epithelium. To accomplish this, we have established an organotypic culture model that mimics a preneoplastic tissue and contains mixtures of genetically marked (ß-galactosidase), low-grade malignant keratinocytes (HaCaT-ras II-4) and normal human keratinocytes (NHKs) to monitor the fate and phenotype of these cells after treatment with 12-O-tetradecanoylphorbol-13-acetate (TPA). In submerged culture, concentrations of 0.001–1 µg/ml TPA were shown to limit the growth of NHKs yet had no effect on growth of II-4 cells. TPA (0.001 µg/ml) was then added to organotypic cultures containing mixtures of NHK:II-4 cells at varying ratios to determine whether this agent could selectively stimulate clonal expansion of II-4 cells in a normal epidermal background. Immunofluorescence for ß-galactosidase demonstrated that TPA caused a significant increase in the percentage of ß-galactosidase-positive areas in 12:1 and 4:1 mixtures. This TPA-induced expansion of II-4 cells was associated with a marked decrease in proliferation of NHKs, suggesting that II-4 could selectively expand because of its growth advantage relative to NHKs. Clonal expansion of tumor cells was temporally linked to the decreased expression of filaggrin and keratin 1 expression in adjacent NHKs. These findings indicate that TPA may enable expansion of potentially malignant cells through the epigenetic modification of proliferation in NHKs and differentiation of NHK and II-4 cells.




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Cancer Research Clinical Cancer Research
Cancer Epidemiology Biomarkers & Prevention Molecular Cancer Therapeutics
Molecular Cancer Research Cancer Prevention Research
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Annual Meeting Education Book Meeting Abstracts Online
Copyright © 1999 by the American Association for Cancer Research.