TY - JOUR
T1 - Ultraviolet B irradiation induces expansion of intraepithelial tumor cells in a tissue model of early cancer progression
AU - Mudgil, Adarsh V.
AU - Segal, Nadav
AU - Andriani, Frank
AU - Wang, Youai
AU - Fusenig, Norbert E.
AU - Garlick, Jonathan A.
N1 - Funding Information:
We thank Dr. John Sutherland and John Trunk of Brookhaven National Laboratories for assistance with standardization of spectral measurements of the UV light source, Dr. Richard Setlow for helpful discussions and assistance with dosimetric readings, Dr. Francis Gasparro for his assistance in characterizing our UV light source and for helpful discussions, Ning Ling for technical assistance, and Dr. R. Mulligan for the MFG vector. Thanks to Karen Henrickson for preparation of illustrations. This work was supported by a research grant from the Howard Hughes Medical Institute for Medical Students awarded to the medical student A. Mudgil and by the National Institute for Dental and Craniofacial Research (DE011250-06).
PY - 2003/7/1
Y1 - 2003/7/1
N2 - Ultraviolet B irradiation is thought to enable skin cancer progression as clones of genetically damaged keratinocytes escape apoptosis and expand at the expense of adjacent normal cells. Mechanisms through which potentially malignant cells in human skin undergo clonal expansion, however, are not well understood. The goal of this study was to characterize the role of ultraviolet B irradiation on the intraepithelial expansion of early stage human tumor cells in organotypic skin cultures. To accomplish this, we have studied the effect of ultraviolet B irradiation on organotypic cultures that were fabricated by mixing normal human keratinocytes with β-galactosidase-marked, intraepithelial tumor cells (HaCaT-ras, clone II-4), which bear mutations in both p53 alleles and harbor an activated H-ras oncogene. We found that when organotypic mixtures were exposed to an ultraviolet B dose of 50 mJ per cm2, intraepithelial tumor cells underwent a significant degree of proliferative expansion compared to nonirradiated cultures. To understand this response, organotypic cultures of normal keratinocytes were exposed to ultraviolet B and showed a dose-dependent increase in numbers of sunburn cells and TUNEL-positive cells although their proliferation was suppressed. In contrast, neither the apoptotic nor the proliferative response of II-4 cells was altered by ultraviolet B in organotypic cultures. The differential response of these cell types suggested that II-4 cells were resistant to ultraviolet-B-induced alterations, which allowed these intraepithelial tumor cells to gain a selective growth and survival advantage relative to neighboring normal cells. These findings demonstrate that ultraviolet B exposure can induce the intraepithelial expansion of apoptosis-resistant, p53-mutant, and ras-activated keratinocytes, suggesting that this agent can act to promote the early stages of epithelial carcinogenesis.
AB - Ultraviolet B irradiation is thought to enable skin cancer progression as clones of genetically damaged keratinocytes escape apoptosis and expand at the expense of adjacent normal cells. Mechanisms through which potentially malignant cells in human skin undergo clonal expansion, however, are not well understood. The goal of this study was to characterize the role of ultraviolet B irradiation on the intraepithelial expansion of early stage human tumor cells in organotypic skin cultures. To accomplish this, we have studied the effect of ultraviolet B irradiation on organotypic cultures that were fabricated by mixing normal human keratinocytes with β-galactosidase-marked, intraepithelial tumor cells (HaCaT-ras, clone II-4), which bear mutations in both p53 alleles and harbor an activated H-ras oncogene. We found that when organotypic mixtures were exposed to an ultraviolet B dose of 50 mJ per cm2, intraepithelial tumor cells underwent a significant degree of proliferative expansion compared to nonirradiated cultures. To understand this response, organotypic cultures of normal keratinocytes were exposed to ultraviolet B and showed a dose-dependent increase in numbers of sunburn cells and TUNEL-positive cells although their proliferation was suppressed. In contrast, neither the apoptotic nor the proliferative response of II-4 cells was altered by ultraviolet B in organotypic cultures. The differential response of these cell types suggested that II-4 cells were resistant to ultraviolet-B-induced alterations, which allowed these intraepithelial tumor cells to gain a selective growth and survival advantage relative to neighboring normal cells. These findings demonstrate that ultraviolet B exposure can induce the intraepithelial expansion of apoptosis-resistant, p53-mutant, and ras-activated keratinocytes, suggesting that this agent can act to promote the early stages of epithelial carcinogenesis.
KW - Apoptosis
KW - Intraepithelial neoplasia
KW - Organotypic culture
KW - UVB irradiation
UR - https://www.scopus.com/pages/publications/0042867232
U2 - 10.1046/j.1523-1747.2003.12320.x
DO - 10.1046/j.1523-1747.2003.12320.x
M3 - Article
C2 - 12839581
AN - SCOPUS:0042867232
SN - 0022-202X
VL - 121
SP - 191
EP - 197
JO - Journal of Investigative Dermatology
JF - Journal of Investigative Dermatology
IS - 1
ER -