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DOI10.1002/etc.3855
Impaired swim bladder inflation in early life stage fathead minnows exposed to a deiodinase inhibitor, iopanoic acid
Cavallin, Jenna E.1; Ankley, Gerald T.2; Blackwell, Brett R.2; Blanksma, Chad A.1; Fay, Kellie A.2,3; Jensen, Kathleen M.2; Kahl, Michael D.2; Knapen, Dries4; Kosian, Patricia A.2; Poole, Shane T.2; Randolph, Eric C.5; Schroeder, Anthony L.6; Vergauwen, Lucia4,7; Villeneuve, Daniel L.2
发表日期2017-11-01
ISSN0730-7268
卷号36期号:11页码:2942-2952
英文摘要

Inflation of the posterior and/or anterior swim bladder is a process previously demonstrated to be regulated by thyroid hormones. We investigated whether inhibition of deiodinases, which convert thyroxine (T4) to the more biologically active form, 3,5,3-triiodothyronine (T3), would impact swim bladder inflation. Two experiments were conducted using a model deiodinase inhibitor, iopanoic acid (IOP). First, fathead minnow embryos were exposed to 0.6, 1.9, or 6.0mg/L or control water until 6 d postfertilization (dpf), at which time posterior swim bladder inflation was assessed. To examine anterior swim bladder inflation, a second study was conducted with 6-dpf larvae exposed to the same IOP concentrations until 21 dpf. Fish from both studies were sampled for T4/T3 measurements and gene transcription analyses. Incidence and length of inflated posterior swim bladders were significantly reduced in the 6.0mg/L treatment at 6 dpf. Incidence of inflation and length of anterior swim bladder were significantly reduced in all IOP treatments at 14 dpf, but inflation recovered by 18 dpf. Throughout the larval study, whole-body T4 concentrations increased and T3 concentrations decreased in all IOP treatments. Consistent with hypothesized compensatory responses, deiodinase-2 messenger ribonucleic acid (mRNA) was up-regulated in the larval study, and thyroperoxidase mRNA was down-regulated in all IOP treatments in both studies. These results support the hypothesized adverse outcome pathways linking inhibition of deiodinase activity to impaired swim bladder inflation. Environ Toxicol Chem 2017;36:2942-2952. Published 2017 Wiley Periodicals Inc. on behalf of SETAC. This article is a US government work and, as such, is in the public domain in the United States of America.


英文关键词Developmental toxicity;Aquatic toxicology;Endocrine-disrupting compounds;Thyroid disruption;Adverse outcome pathway
语种英语
WOS记录号WOS:000413923500009
来源期刊ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY
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/61024
作者单位1.US EPA, Badger Tech Serv, Midcontinent Ecol Div, Duluth, MN 55804 USA;
2.US EPA, Midcontinent Ecol Div, Duluth, MN USA;
3.Univ Minnesota, Biol Dept, Duluth, MN 55812 USA;
4.Univ Antwerp, Dept Vet Sci, Zebrafishlab, Vet Physiol & Biochem, Antwerp, Belgium;
5.US EPA, Midcontinent Ecol Div, ORISE Res Participat Program, Duluth, MN USA;
6.Univ Minnesota, Dept Biol, Crookston, MN USA;
7.Univ Antwerp, Dept Biol, Syst Physiol & Ecotoxicol Res SPHERE, Antwerp, Belgium
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GB/T 7714
Cavallin, Jenna E.,Ankley, Gerald T.,Blackwell, Brett R.,et al. Impaired swim bladder inflation in early life stage fathead minnows exposed to a deiodinase inhibitor, iopanoic acid[J]. 美国环保署,2017,36(11):2942-2952.
APA Cavallin, Jenna E..,Ankley, Gerald T..,Blackwell, Brett R..,Blanksma, Chad A..,Fay, Kellie A..,...&Villeneuve, Daniel L..(2017).Impaired swim bladder inflation in early life stage fathead minnows exposed to a deiodinase inhibitor, iopanoic acid.ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY,36(11),2942-2952.
MLA Cavallin, Jenna E.,et al."Impaired swim bladder inflation in early life stage fathead minnows exposed to a deiodinase inhibitor, iopanoic acid".ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY 36.11(2017):2942-2952.
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