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Boyes et al., Figure 1A
Data support each of the figures in Boyes et al., Moderate Perinatal Thyroid Hormone Insufficiency Alters Visual System Function in Adult Rats (to be submitted for publication). This dataset is associated with the following publication: Boyes, W., L. Degn, B. George, and M. Gilbert. Moderate Perinatal Thyroid Hormone Insufficiency Alters Visual System Function in Adult Rats. NEUROTOXICOLOGY. Elsevier B.V., Amsterdam, NETHERLANDS, 67: 73-83, (2018).
연관 데이터
Boyes et al., Figure 1A
공공데이터포털
Data support each of the figures in Boyes et al., Moderate Perinatal Thyroid Hormone Insufficiency Alters Visual System Function in Adult Rats (to be submitted for publication). This dataset is associated with the following publication: Boyes, W., L. Degn, B. George, and M. Gilbert. Moderate Perinatal Thyroid Hormone Insufficiency Alters Visual System Function in Adult Rats. NEUROTOXICOLOGY. Elsevier B.V., Amsterdam, NETHERLANDS, 67: 73-83, (2018).
Gilbert Extrathyroidal MOA and DNT
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This file contains summary data of thyroid hormones in serum and brain in rat dams and their pups following maternal exposure to a perflorinated substance, PFHxS and an antimicrobial, Triclosan. Gene expression in thyroid glands and liver and brain were investigated. Anatomical and bahavioral indices of developmental neurotoxicity were assessed. Result so fall of these inquiries are summarized in these datasets. This dataset is associated with the following publication: Gilbert, M.E., K. OShaughnessy, S. Thomas, C. Riutta, C. Wood, A. Smith, W. Oshiro, J. Ford, A. Hotchkiss, I. Hassan, and R.L. Ford. Thyroid Disruptors: Extrathyroidal Sites of Chemical Action and Neurodevelopmental Outcome-An Examination Using Triclosan and Perfluorohexane Sulfonate. TOXICOLOGICAL SCIENCES. Society of Toxicology, RESTON, VA, 183(6): 195-213, (2021).
Raw data presented in manuscript "The Pollutant Perfluorohexane Sulfonate (PFHxS) Reduces Serum Thyroxine but Does Not Alter Thyroid Hormone Action in the Postnatal Rat Brain" by O'Shaughnessy et al. 2024.
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Raw data to accompanying manuscript "The Pollutant Perfluorohexane Sulfonate (PFHxS) Reduces Serum Thyroxine but Does Not Alter Thyroid Hormone Action in the Postnatal Rat Brain". This dataset is associated with the following publication: O'Shaughnessy, K., K. Bell, A. Sasser, M. Gilbert, C. Riutta, J. Ford, J. McCord, and C. Wood. The Pollutant Perfluorohexane Sulfonate (PFHxS) Reduces Serum Thyroxine but Does Not Alter Thyroid Hormone Action in the Postnatal Rat Brain. ENVIRONMENT INTERNATIONAL. Elsevier B.V., Amsterdam, NETHERLANDS, 190: 108838, (2024).
O'Shaughnessy et al. 2023
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Data for O'Shaughnessy et al. 2023 - Bypassing the Brain Barriers: Upregulation of Serum miR-495 and miR-543-3p Reflects Thyroid-Mediated Developmental Neurotoxicity in the Rat. This dataset is associated with the following publication: O'Shaughnessy, K., A. Sasser, K. Bell, C. Riutta, J. Ford, R. Grindstaff, and M. Gilbert. Bypassing the Brain Barriers: Upregulation of Serum miR-495 and miR-543-3p Reflects Thyroid-Mediated Developmental Neurotoxicity in the Rat. TOXICOLOGICAL SCIENCES. Society of Toxicology, RESTON, VA, 198(1): 128-140, (2024).
Establishing the “Biological Relevance” of Dipentyl Phthalate Reductions in Fetal Rat Testosterone Production and Plasma and Testis Testosterone Levels
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metadata sheet, data sheet for each table and figure in the published manuscript. This dataset is associated with the following publication: Gray , E., J. Furr , K. Tatum-Gibbs, C. Lambright , H. Sampson, B. Hannas, V. Wilson , A. Hotchkiss , and P. Foster. Establishing the Biological Relevance of Dipentyl Phthalate Reductions in Fetal Rat Testosterone Production and Plasma and Testis Testosterone Levels. TOXICOLOGICAL SCIENCES. Society of Toxicology, 149(1): 178-91, (2016).
genomic and endocrine effects of in utero p[hthalates
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effects of in utero phthalate and other chemical administration on male rat sexual differentiation: Non PPAR mediated AOP. This dataset is associated with the following publication: Gray, E., J. Conley, C. Lambright, N. Evans, J. Furr, V. Wilson, B. Hannas, P. Foster, and H. Sampson. Genomic and Hormonal Biomarkers of Phthalate-induced Male Rat Reproductive Developmental Toxicity: Part II A Targeted RT-qPCR Array Approach that Defines a Unique Adverse Outcome Pathway.. TOXICOLOGICAL SCIENCES. Society of Toxicology, RESTON, VA, 182(2): 195-214, (2021).
biological relevance of reductions of testosterone production on the adverse effects of in utero phthalate combinations
공공데이터포털
RAW DATA, SAS FILES AND DATA MEANS. This dataset is associated with the following publication: Howdeshell, K., C. Rider, V. Wilson , J. Furr , C. Lambright , and E. Gray. Dose addition models based on biologically-relevant reductions in fetal testosterone accurately predict postnatal reproductive tract alterations by a phthalate mixture in rats. TOXICOLOGICAL SCIENCES. Society of Toxicology, 148(2): 488-502, (2015).
FRTL-5 RAIU of 5-AT
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Iodide uptake following a two-hour incubation with concentrations of 5-ATcompared to control iodide uptake in FRTL thyroid follicular cells. This dataset is associated with the following publication: Adams, V., M. Bazar, E. Reinke, A. Buckalew, and W. Eck. In vitro and in vivo effects of 5-Aminotetrazole (5-AT)- an energetic compound. REGULATORY TOXICOLOGY AND PHARMACOLOGY. Elsevier Science Ltd, New York, NY, USA, 111(104573): 1, (2020).
Data supporting amphibian thyroid model parameterization
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This dataset was generated to support parameterization of a larval amphibian thyroid axis computational model. Specifically, plasma iodine levels were determined not only to inform a concentration value for model parameter specification in the model, but also to support the notion that aquatic and terrestrial species should be considered substantially different with regard to circulating iodide levels. Other computational model physical parameters were informed by evaluating Xenopus laevis thyroid gland histological images for morphological features including thyroid follicular cell numbers and areas. This dataset is associated with the following publication: Haselman, J., J. Nichols, K. Mattingly, M. Hornung, and S. Degitz. A biologically based computational model for the hypothalamic-pituitary-thyroid (HPT) axis in Xenopus laevis larvae. MATHEMATICAL BIOSCIENCES. Elsevier Science Ltd, New York, NY, USA, 362: 109021, (2023).