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DOI10.1093/toxsci/kfw134
A Demonstration of the Uncertainty in Predicting the Estrogenic Activity of Individual Chemicals and Mixtures From an In Vitro Estrogen Receptor Transcriptional Activation Assay (T47D-KBluc) to the In Vivo Uterotrophic Assay Using Oral Exposure
Conley, Justin M.1; Hannas, Bethany R.1,2; Furr, Johnathan R.1,3; Wilson, Vickie S.1; Gray, L. Earl, Jr.1
发表日期2016-10-01
ISSN1096-6080
卷号153期号:2页码:382-395
英文摘要

In vitro estrogen receptor assays are valuable tools for identifying environmental samples and chemicals that display estrogenic activity. However, in vitro potency cannot necessarily be extrapolated to estimates of in vivo potency because in vitro assays are currently unable to fully account for absorption, distribution, metabolism, and excretion. To explore this issue, we calculated relative potency factors (RPF), using 17 alpha-ethinyl estradiol (EE2) as the reference compound, for several chemicals and mixtures in the T47D-KBluc estrogen receptor transactivation assay. In vitro RPFs were used to predict rat oral uterotrophic assay responses for these chemicals and mixtures. EE2, 17 beta-estradiol (E2), benzyl-butyl phthalate (BBP), bisphenol-A (BPA), bisphenol-AF (BPAF), bisphenol-C (BPC), bisphenol-S (BPS), and methoxychlor (MET) were tested individually, while BPS + MET, BPAF + MET, and BPAF + BPC + BPS + EE2 + MET were tested as equipotent mixtures. In vivo ED50 values for BPA, BPAF, and BPC were accurately predicted using in vitro data; however, E2 was less potent than predicted, BBP was a false positive, and BPS and MET were 76.6 and 368.3-fold more active in vivo than predicted from the in vitro potency, respectively. Further, mixture ED50 values were more accurately predicted by the dose addition model using individual chemical in vivo uterotrophic data (0.7-1.5-fold difference from observed) than in vitro data (1.4-86.8-fold). Overall, these data illustrate the potential for both underestimating and overestimating in vivo potency from predictions made with in vitro data for compounds that undergo substantial disposition following oral administration. Accounting for aspects of toxicokinetics, notably metabolism, in in vitro models will be necessary for accurate in vitro-to-in vivo extrapolations.


英文关键词mixture;T47D-KBluc;bisphenols;estrogen;uterotrophic;oral exposure
语种英语
WOS记录号WOS:000387902200015
来源期刊TOXICOLOGICAL SCIENCES
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/58451
作者单位1.US EPA, Toxic Assessment Div, Res Triangle Pk, NC 27711 USA;
2.Dow Chem Co USA, Midland, MI 48674 USA;
3.Southern Res, Birmingham, AL 35205 USA
推荐引用方式
GB/T 7714
Conley, Justin M.,Hannas, Bethany R.,Furr, Johnathan R.,et al. A Demonstration of the Uncertainty in Predicting the Estrogenic Activity of Individual Chemicals and Mixtures From an In Vitro Estrogen Receptor Transcriptional Activation Assay (T47D-KBluc) to the In Vivo Uterotrophic Assay Using Oral Exposure[J]. 美国环保署,2016,153(2):382-395.
APA Conley, Justin M.,Hannas, Bethany R.,Furr, Johnathan R.,Wilson, Vickie S.,&Gray, L. Earl, Jr..(2016).A Demonstration of the Uncertainty in Predicting the Estrogenic Activity of Individual Chemicals and Mixtures From an In Vitro Estrogen Receptor Transcriptional Activation Assay (T47D-KBluc) to the In Vivo Uterotrophic Assay Using Oral Exposure.TOXICOLOGICAL SCIENCES,153(2),382-395.
MLA Conley, Justin M.,et al."A Demonstration of the Uncertainty in Predicting the Estrogenic Activity of Individual Chemicals and Mixtures From an In Vitro Estrogen Receptor Transcriptional Activation Assay (T47D-KBluc) to the In Vivo Uterotrophic Assay Using Oral Exposure".TOXICOLOGICAL SCIENCES 153.2(2016):382-395.
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