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Summary Anatomy Item Literature (981) Expression Attributions Wiki
XB-ANAT-160

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Developmental reproductive toxicity and endocrine activity of propiconazole in the Xenopus tropicalis model., Svanholm S., Sci Total Environ. January 20, 2021; 753 141940.                        


Notch signaling induces either apoptosis or cell fate change in multiciliated cells during mucociliary tissue remodeling., Tasca A., Dev Cell. February 22, 2021; 56 (4): 525-539.e6.  


Thyroid Hormone Receptor Is Essential for Larval Epithelial Apoptosis and Adult Epithelial Stem Cell Development but Not Adult Intestinal Morphogenesis during Xenopus tropicalis Metamorphosis., Shibata Y., Cells. March 3, 2021; 10 (3):                             


A Role of Endogenous Histone Acetyltransferase Steroid Hormone Receptor Coactivator 3 in Thyroid Hormone Signaling During Xenopus Intestinal Metamorphosis., Tanizaki Y., Thyroid. April 1, 2021; 31 (4): 692-702.


Life Without Thyroid Hormone Receptor., Shi YB, Shi YB., Endocrinology. April 1, 2021; 162 (4):


Exposure Impacts of Diquat dibromide herbicide formulation on amphibian larval development., Babalola OO., Heliyon. April 1, 2021; 7 (4): e06700.


Exposure Impacts of Environmentally Relevant Concentrations of a Glufosinate Ammonium Herbicide Formulation on Larval Development and Thyroid Histology of Xenopus laevis., Babalola OO., Arch Environ Contam Toxicol. May 1, 2021; 80 (4): 717-725.


Acute and chronic toxicity tests of systemic insecticides, four neonicotinoids and fipronil, using the tadpoles of the western clawed frog Silurana tropicalis., Saka M., Chemosphere. May 1, 2021; 270 129418.


Investigation of NH3 as a selective thyroid hormone receptor modulator in larval zebrafish (Danio rerio)., Walter KM., Neurotoxicology. May 1, 2021; 84 96-104.


Thyroid Disrupting Chemicals in Mixture Perturb Thymocyte Differentiation in Xenopus laevis Tadpoles., McGuire CC., Toxicol Sci. May 27, 2021; 181 (2): 262-272.


Xenopus laevis and human type 3 iodothyronine deiodinase enzyme cross-species sensitivity to inhibition by ToxCast chemicals., Mayasich SA., Toxicol In Vitro. June 1, 2021; 73 105141.


Pesticide-induced multigenerational effects on amphibian reproduction and metabolism., Karlsson O., Sci Total Environ. June 25, 2021; 775 145771.                      


Bisphenols disrupt thyroid hormone (TH) signaling in the brain and affect TH-dependent brain development in Xenopus laevis., Niu Y., Aquat Toxicol. August 1, 2021; 237 105902.


The Extended Amphibian Metamorphosis Assay: A Thyroid-Specific and Less Animal-Intensive Alternative to the Larval Amphibian Growth and Development Assay., Ortego LS., Environ Toxicol Chem. August 1, 2021; 40 (8): 2135-2144.  


Xenopus laevis tadpoles exposed to metamifop: Changes in growth, behavioral endpoints, neurotransmitters, antioxidant system and thyroid development., Liu R., Ecotoxicol Environ Saf. September 1, 2021; 220 112417.                


Transcriptome and Methylome Analysis Reveal Complex Cross-Talks between Thyroid Hormone and Glucocorticoid Signaling at Xenopus Metamorphosis., Buisine N., Cells. September 9, 2021; 10 (9):               


The pyriproxyfen metabolite, 4'-OH-PPF, disrupts thyroid hormone signaling in neural stem cells, modifying neurodevelopmental genes affected by ZIKA virus infection., Vancamp P., Environ Pollut. September 15, 2021; 285 117654.


Exposure impacts of Imazapyr formulation on larval development and thyroid histology of Xenopus laevis., Babalola OO., Environ Sci Pollut Res Int. October 1, 2021; 28 (37): 50967-50974.


Graphene oxide and reduced graphene oxide promote the effects of exogenous T3 thyroid hormone in the amphibian Xenopus laevis., Evariste L., Chemosphere. October 1, 2021; 281 130901.


Biochemical and developmental effects of thyroid and anti-thyroid drugs on different early life stages of Xenopus laevis., Boran F., Environ Toxicol Pharmacol. October 1, 2021; 87 103738.


An examination of historical control histopathology metadata from 51 Amphibian Metamorphosis Assays., Wolf JC., Crit Rev Toxicol. October 1, 2021; 51 (9): 729-739.      


Identification of ZBTB26 as a Novel Risk Factor for Congenital Hypothyroidism., Vick P., Genes (Basel). November 24, 2021; 12 (12):                     


Effect assessment of reclaimed waters and carbamazepine exposure on the thyroid axis of Xenopus laevis: Gene expression modifications., Martínez-Guitarte JL., Environ Pollut. December 15, 2021; 291 118226.  


Tetrabromobisphenol A Disturbs Brain Development in Both Thyroid Hormone-Dependent and -Independent Manners in Xenopus laevis., Dong M., Molecules. December 31, 2021; 27 (1):


Crystal structure of aspartyl dipeptidase from Xenopus laevis revealed ligand binding induced loop ordering and catalytic triad assembly., Kumar A., Proteins. January 1, 2022; 90 (1): 299-308.


Glucocorticoid receptor mediates corticosterone-thyroid hormone synergy essential for metamorphosis in Xenopus tropicalis tadpoles., Sterner ZR., Gen Comp Endocrinol. January 1, 2022; 315 113942.              


Sperm associated antigen 7 is activated by T3 during Xenopus tropicalis metamorphosis via a thyroid hormone response element within the first intron., Fu L., Dev Growth Differ. January 1, 2022; 64 (1): 48-58.


Developmental exposure to thyroid disrupting chemical mixtures alters metamorphosis and post-metamorphic thymocyte differentiation., McGuire CC., Curr Res Toxicol. January 1, 2022; 3 100094.


Relationship between serum thyroid hormones and their associated metabolites, and gene expression bioindicators in the back skin of Rana [Lithobates] catesbeiana tadpoles and frogs during metamorphosis., Poulsen R., Front Endocrinol (Lausanne). January 1, 2022; 13 1103051.


Thyroid Hormone Receptor α Controls the Hind Limb Metamorphosis by Regulating Cell Proliferation and Wnt Signaling Pathways in Xenopus tropicalis., Tanizaki Y., Int J Mol Sci. January 22, 2022; 23 (3):                     


A Multiwell-Based Assay for Screening Thyroid Hormone Signaling Disruptors Using thibz Expression as a Sensitive Endpoint in Xenopus laevis., Li J., Molecules. January 25, 2022; 27 (3):


Thyroid hormone receptor α controls larval intestinal epithelial cell death by regulating the CDK1 pathway., Tanizaki Y., Commun Biol. February 7, 2022; 5 (1): 112.


Exposure to the synthetic phenolic antioxidant 4,4'-thiobis(6-t-butyl-m-cresol) disrupts early development in the frog Silurana tropicalis., Reyes YM., Chemosphere. March 1, 2022; 291 (Pt 1): 132814.


Effects of sodium perchlorate and 6-propylthiouracil on metamorphosis and thyroid gland histopathology in the European common frog (Rana temporaria)., Aviles A., Aquat Toxicol. March 1, 2022; 244 106094.


Nutritional control of thyroid morphogenesis through gastrointestinal hormones., Takagishi M., Curr Biol. April 11, 2022; 32 (7): 1485-1496.e4.                            


Retinoid-X receptor agonists increase thyroid hormone competence in lower jaw remodeling of pre-metamorphic Xenopus laevis tadpoles., Mengeling BJ., PLoS One. April 13, 2022; 17 (4): e0266946.          


Characterization of the Mechanistic Linkages Between Iodothyronine Deiodinase Inhibition and Impaired Thyroid-Mediated Growth and Development in Xenopus laevis Using Iopanoic Acid., Haselman JT., Toxicol Sci. April 26, 2022; 187 (1): 139-149.


Dioxin Disrupts Thyroid Hormone and Glucocorticoid Induction of klf9, a Master Regulator of Frog Metamorphosis., Han DT., Toxicol Sci. April 26, 2022; 187 (1): 150-161.


Essential roles of YAP-TEAD complex in adult stem cell development during thyroid hormone-induced intestinal remodeling of Xenopus laevis., Hasebe T., Cell Tissue Res. May 1, 2022; 388 (2): 313-329.


Cross-species comparison of chemical inhibition of human and Xenopus iodotyrosine deiodinase., Olker JH., Aquat Toxicol. August 1, 2022; 249 106227.


Amphibian Metamorphosis Assay: Investigation of the potential effects of five chemicals on the hypothalamic-pituitary thyroid axis of Xenopus laevis., Kamel A., Regul Toxicol Pharmacol. October 1, 2022; 134 105241.


Thyroid hormone-dependent and independent processes of red blood cell transition from larval to adult type during metamorphosis in Xenopus laevis., Yamaguchi M., Dev Growth Differ. October 1, 2022; 64 (8): 420-432.              


Amphibian toxicity testing for identification of thyroid disrupting chemicals., Dang Z., Environ Pollut. October 15, 2022; 311 120006.


Upregulation of proto-oncogene ski by thyroid hormone in the intestine and tail during Xenopus metamorphosis., Fu L., Gen Comp Endocrinol. November 1, 2022; 328 114102.        


Cellular and molecular profiles of larval and adult Xenopus corneal epithelia resolved at the single-cell level., Sonam S., Dev Biol. November 1, 2022; 491 13-30.                                


Crosstalk between Thyroid Hormone and Corticosteroid Signaling Targets Cell Proliferation in Xenopus tropicalis Tadpole Liver., Rigolet M., Int J Mol Sci. November 8, 2022; 23 (22):               


Short- and Long-Term Effects of Chlorpyrifos on Thyroid Hormone Axis and Brain Development in Xenopus laevis., Spirhanzlova P., Neuroendocrinology. January 1, 2023; 113 (12): 1298-1311.


Organ-specific effects on target binding due to knockout of thyroid hormone receptor α during Xenopus metamorphosis., Tanizaki Y., Dev Growth Differ. January 1, 2023; 65 (1): 23-28.  


Stem cell development involves divergent thyroid hormone receptor subtype expression and epigenetic modifications in the amphibian intestine during metamorphosis., Hasebe T., Vitam Horm. January 1, 2023; 122 1-22.


Characterization of a novel corticosterone response gene in Xenopus tropicalis tadpole tails., Paul B., Front Endocrinol (Lausanne). January 1, 2023; 14 1121002.              

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