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DOI10.1002/tox.22184
Approaches for Predicting Effects of Unintended Environmental Exposure to an Endocrine Active Pharmaceutical, Tamoxifen
Mills, Lesley J.1; Henderson, W. Matthew2; Jayaraman, Saro1; Gutjahr-Gobell, Ruth E.1; Zaroogian, Gerald E.1; Horowitz, Doranne Borsay1; Laws, Susan C.3
发表日期2016-12-01
ISSN1520-4081
卷号31期号:12页码:1834-1850
英文摘要

Tamoxifen is an endocrine-active pharmaceutical (EAP) that is used world-wide. Because tamoxifen is a ubiquitous pharmaceutical and interacts with estrogen receptors, a case study was conducted with this compound to (1) determine effects on reproductive endpoints in a nontarget species (i.e., a fish), (2) compare biologically-active metabolites across species, (3) assess whether in vitro assays predict in vivo results, and (4) investigate metabolomic profiles in tamoxifen-treated fish to better understand the biological mechanisms of tamoxifen toxicity. In reproductive assays, tamoxifen exposure caused a significant reduction in egg production and significantly increased ovarian aromatase activity in spawning adult cunner fish (Tautogolabrus adspersus). In plasma from tamoxifen-exposed cunner, the predominant metabolite was 4-hydroxytamoxifen, while in rats it was N-desmethyltamoxifen. Because 4-hydroxytamoxifen is a more biologically active metabolite than N-desmethyltamoxifen, this difference could result in a different level of risk for the two species. The results of in vitro assays with fish hepatic microsomes to assess tamoxifen metabolism did not match in vivo results, indicating probable differences in excretion of tamoxifen metabolites in fish compared with rats. For the first time, a complete in vitro characterization of the metabolism of tamoxifen using fish microsomes is presented. Furthermore, a metabolomic investigation of cunner gonad extracts demonstrates that tamoxifen alters the biochemical profile in this nontarget species. Understanding the consequence of tamoxifen exposure in nontarget species, and assessing the discrepancies between sex-and species-mediated endpoints, is a step toward understanding how to accurately assess the risks posed by EAPs, such as tamoxifen, in the aquatic environment. (C) 2015 Wiley Periodicals, Inc.


英文关键词tamoxifen;endocrine active pharmaceuticals;metabolism;microsomes;fish;aromatase activity;reproduction;in vitro;in vivo;metabolomics
语种英语
WOS记录号WOS:000388617700014
来源期刊ENVIRONMENTAL TOXICOLOGY
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/62387
作者单位1.US EPA, Atlantic Ecol Div, NHEERL, ORD, Narragansett, RI 02882 USA;
2.US EPA, Ecosyst Res Div, NERL, ORD, Athens, GA 30605 USA;
3.US EPA, Tox Assessment Div, NHEERL, ORD, Res Triangle Pk, NC 27711 USA
推荐引用方式
GB/T 7714
Mills, Lesley J.,Henderson, W. Matthew,Jayaraman, Saro,et al. Approaches for Predicting Effects of Unintended Environmental Exposure to an Endocrine Active Pharmaceutical, Tamoxifen[J]. 美国环保署,2016,31(12):1834-1850.
APA Mills, Lesley J..,Henderson, W. Matthew.,Jayaraman, Saro.,Gutjahr-Gobell, Ruth E..,Zaroogian, Gerald E..,...&Laws, Susan C..(2016).Approaches for Predicting Effects of Unintended Environmental Exposure to an Endocrine Active Pharmaceutical, Tamoxifen.ENVIRONMENTAL TOXICOLOGY,31(12),1834-1850.
MLA Mills, Lesley J.,et al."Approaches for Predicting Effects of Unintended Environmental Exposure to an Endocrine Active Pharmaceutical, Tamoxifen".ENVIRONMENTAL TOXICOLOGY 31.12(2016):1834-1850.
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