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DOI10.1093/toxsci/kfs335
An Animal Model of Marginal Iodine Deficiency During Development: The Thyroid Axis and Neurodevelopmental Outcome
Gilbert, Mary E.1; Hedge, Joan M.2; Valentin-Blasini, Liza3; Blount, Benjamin C.3; Kannan, Kurunthachalam4,5; Tietge, Joseph6; Zoeller, R. Thomas7; Crofton, Kevin M.2; Jarrett, Jeffrey M.3; Fisher, Jeffrey W.8
发表日期2013-03-01
ISSN1096-6080
卷号132期号:1页码:177-195
英文摘要

Thyroid hormones (THs) are essential for brain development, and iodine is required for TH synthesis. Environmental chemicals that perturb the thyroid axis result in modest reductions in TH, yet there is a paucity of data on the extent of neurological impairments associated with low-level TH disruption. This study examined the dose-response characteristics of marginal iodine deficiency (ID) on parameters of thyroid function and neurodevelopment. Diets deficient in iodine were prepared by adding 975, 200, 125, 25, or 0 g/kg potassium iodate to the base casein diet to produce five nominal iodine levels ranging from ample (Diet 1: 1000 g iodine/kg chow, D1) to deficient (Diet 5: 25 g iodine/kg chow, D5). Female Long Evans rats were maintained on these diets beginning 7 weeks prior to breeding until the end of lactation. Dams were sacrificed on gestational days 16 and 20, or when pups were weaned on postnatal day (PN) 21. Fetal tissue was harvested from the dams, and pups were sacrificed on PN14 and PN21. Blood, thyroid gland, and brain were collected for analysis of iodine, TH, and TH precursors and metabolites. Serum and thyroid gland iodine and TH were reduced in animals receiving two diets that were most deficient in iodine. T4 was reduced in the fetal brain but was not altered in the neonatal brain. Neurobehavior, assessed by acoustic startle, water maze learning, and fear conditioning, was unchanged in adult offspring, but excitatory synaptic transmission was impaired in the dentate gyrus in animals receiving two diets that were most deficient in iodine. A 15% reduction in cortical T4 in the fetal brain was sufficient to induce permanent reductions in synaptic function in adults. These findings have implications for regulation of TH-disrupting chemicals and suggest that standard behavioral assays do not readily detect neurotoxicity induced by modest developmental TH disruption.


英文关键词thyroid;iodine;hypothyroidism;hippocampus;neurodevelopment;learning;synaptic function;biologically based dose-response models;BBDR
语种英语
WOS记录号WOS:000315434300017
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/61178
作者单位1.US EPA, Tox Assessment Div, Res Triangle Pk, NC 27711 USA;
2.US EPA, Integrated Syst Biol Div, Res Triangle Pk, NC 27711 USA;
3.Ctr Dis Control & Prevent, Atlanta, GA USA;
4.SUNY Albany, New York State Dept Hlth, Wadsworth Ctr, Albany, NY 12222 USA;
5.SUNY Albany, Dept Environm Hlth Sci, Sch Publ Hlth, Albany, NY USA;
6.US EPA, MidAtlantic Ecol Div, Duluth, MN USA;
7.Univ Massachusetts, Dept Biol, Amherst, MA 01003 USA;
8.US FDA, Natl Ctr Toxicol Res, Jefferson, AR 72079 USA
推荐引用方式
GB/T 7714
Gilbert, Mary E.,Hedge, Joan M.,Valentin-Blasini, Liza,et al. An Animal Model of Marginal Iodine Deficiency During Development: The Thyroid Axis and Neurodevelopmental Outcome[J]. 美国环保署,2013,132(1):177-195.
APA Gilbert, Mary E..,Hedge, Joan M..,Valentin-Blasini, Liza.,Blount, Benjamin C..,Kannan, Kurunthachalam.,...&Fisher, Jeffrey W..(2013).An Animal Model of Marginal Iodine Deficiency During Development: The Thyroid Axis and Neurodevelopmental Outcome.TOXICOLOGICAL SCIENCES,132(1),177-195.
MLA Gilbert, Mary E.,et al."An Animal Model of Marginal Iodine Deficiency During Development: The Thyroid Axis and Neurodevelopmental Outcome".TOXICOLOGICAL SCIENCES 132.1(2013):177-195.
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