Benzo[k]fluoranthene enhancement and suppression of 17 beta-estradiol catabolism in MCF-7 breast cancer cells

Citation
Kf. Arcaro et al., Benzo[k]fluoranthene enhancement and suppression of 17 beta-estradiol catabolism in MCF-7 breast cancer cells, J TOX E H A, 58(7), 1999, pp. 413-426
Citations number
49
Categorie Soggetti
Environment/Ecology,"Pharmacology & Toxicology
Journal title
JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH-PART A
ISSN journal
15287394 → ACNP
Volume
58
Issue
7
Year of publication
1999
Pages
413 - 426
Database
ISI
SICI code
1528-7394(199912)58:7<413:BEASO1>2.0.ZU;2-M
Abstract
It previously was shown that benzo[k]fluoranthene (BkF), a polycyclic aroma tic hydrocarbon frequently detected in environmental samples, increases cat abolism of 17 beta-estradiol (E-2) in human breast cancer cells. Data in th e present paper demonstrate that BkF both increases and inhibits the catabo lism of E-2 in MCF-7 breast cancer cells, and that the in vitro BkF increas e and inhibition are dependent on the concentration of BkF and the length o f the incubation period. A radiometric assay was used to investigate the ca tabolism of [H-3]E-2 after exposure to 5 concentrations of BkF for 6, 12, 2 4, 36, 48, 60, or 72 h. The concentration of BkF necessary for maximal incr ease in catabolism of E-2 varied with the incubation period. At 6 h, a maxi mal increase was obtained with 0.01 and 0. 1 mu M, and at 48 h a maximal in crease was obtained with 0.5 mu M and 1 mu M BkF. The increased rate of E-2 catabolism was transient at lower concentrations of BkF but remained maxim al at 72 h with 0.5 and 1 mu M BkF. The highest concentration of BkF tested , 5 mu M, was inhibitory at ail time points. In contrast to BkF, fluoranthe ne (FL), another PAH frequently detected in environmental samples, did not significantly increase the catabolism of E-2 at any of the concentrations o r time points tested. Results showing that BkF inhibits the catabolism of E -2 induced by 2,3,7,8-tetrachiorodibenzo-p-dioxin (TCDD) suggest that the B kF inhibition of cellular E-2 catabolism is due to competition between BkF and E-2 for the TCDD-induced enzymes. Overall, results from these studies d emonstrate that BkF both increases and inhibits the cellular catabolism of E-2, and emphasize the importance of considering time as well as concentrat ion when conducting short-term in vitro assays.