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| Title |
Development of a stably transfected estrogen receptor-mediated
luciferase reporter gene assay in the human T47D breast cancer cell line. |
| Autor(s) |
Legler J, van den Brink CE, Brouwer A, Murk AJ, van der Saag PT,
Vethaak AD, van der Burg B |
| Journal |
Toxicol Sci |
| Year |
1999 |
| Volume |
48(1) |
| Pages |
55-66 |
| |
|
| Subject(s) |
DR-CALUX |
| Summary |
 |
Development of an estrogen receptor-mediated, chemical-activated luciferase
reporter gene-expression (ER-CALUX) assay was attempted by stable
transfection of luciferase reporter genes in a number of cell
lines. Stable transfection of the chimeric Gal4 estrogen receptor
and luciferase gene constructs in MCF-7 breast cancer and Hepa.1c1c7
mouse hepatoma cell lines, as well as transfection of a newly
constructed luciferase reporter gene pEREtata-Luc in the ECC-1
human endometrial cell line, resulted in constitutive, non-estradiol-inducible
clones. Stable transfection of pEREtata-Luc in the T47D breast
cancer cell line, however, resulted in an extremely sensitive,
highly responsive cell line. Following a 24-h exposure to
estradiol (E2), stably transfected T47D.Luc cells demonstrated a
detection limit of 0.5 pM, an EC50 of 6 pM, and a maximum
induction of 100-fold relative to solvent controls. No clear
reduction in responsiveness has been found over extended culture
periods (50 passages). Anti-estrogens ICI 182,780, TCDD, and
tamoxifen inhibited the estradiol-mediated luciferase induction.
Genistein, nonylphenol, and o,p'DDT were the most potent (pseudo-)estrogens
tested in this system (EC50 100, 260, and 660 nM, respectively).
Determination of interactive effects of the (pseudo-)estrogens
nonylphenol, o,p'DDT, chlordane, endosulfan, dieldrin, and
methoxychlor revealed that, in combination with 3 pM E2, (pseudo-)estrogens
were additive. Slightly more than additive effects (less than 2-fold)
were found for combinations of dieldrin and endosulfan tested in
the range of 3 to 6 microM. At these concentrations, the
combination of endosulfan and chlordane demonstrated additive
interaction. The ER-CALUX assay with T47D cells can provide a
sensitive, responsive, and rapid in vitro system to detect and
measure substances with potential (anti-)estrogenic activity.
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