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Organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain

Organophosphate esters (OPEs) are widespread in various environmental media, and can disrupt thyroid endocrine signaling pathways. Mechanisms by which OPEs disrupt thyroid hormone (TH) signal transduction are not fully understood. Here, we present in vivo-in vitro-in silico evidence establishing OPE...

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Autores principales: Yan, Zhenfei, Feng, Chenglian, Jin, Xiaowei, Wang, Fangkun, Liu, Cong, Li, Na, Qiao, Yu, Bai, Yingchen, Wu, Fengchang, Giesy, John P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9500371/
https://www.ncbi.nlm.nih.gov/pubmed/36157343
http://dx.doi.org/10.1016/j.ese.2022.100198
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author Yan, Zhenfei
Feng, Chenglian
Jin, Xiaowei
Wang, Fangkun
Liu, Cong
Li, Na
Qiao, Yu
Bai, Yingchen
Wu, Fengchang
Giesy, John P.
author_facet Yan, Zhenfei
Feng, Chenglian
Jin, Xiaowei
Wang, Fangkun
Liu, Cong
Li, Na
Qiao, Yu
Bai, Yingchen
Wu, Fengchang
Giesy, John P.
author_sort Yan, Zhenfei
collection PubMed
description Organophosphate esters (OPEs) are widespread in various environmental media, and can disrupt thyroid endocrine signaling pathways. Mechanisms by which OPEs disrupt thyroid hormone (TH) signal transduction are not fully understood. Here, we present in vivo-in vitro-in silico evidence establishing OPEs as environmental THs competitively entering the brain to inhibit growth of zebrafish via multiple signaling pathways. OPEs can bind to transthyretin (TTR) and thyroxine-binding globulin, thereby affecting the transport of TH in the blood, and to the brain by TTR through the blood–brain barrier. When GH3 cells were exposed to OPEs, cell proliferation was significantly inhibited given that OPEs are competitive inhibitors of TH. Cresyl diphenyl phosphate was shown to be an effective antagonist of TH. Chronic exposure to OPEs significantly inhibited the growth of zebrafish by interfering with thyroperoxidase and thyroglobulin to inhibit TH synthesis. Based on comparisons of modulations of gene expression with the Gene Ontology and Kyoto Encyclopedia of Genes and Genomes databases, signaling pathways related to thyroid endocrine functions, such as receptor–ligand binding and regulation of hormone levels, were identified as being affected by exposure to OPEs. Effects were also associated with the biosynthesis and metabolism of lipids, and neuroactive ligand–receptor interactions. These findings provide a comprehensive understanding of the mechanisms by which OPEs disrupt thyroid pathways in zebrafish.
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spelling pubmed-95003712022-09-23 Organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain Yan, Zhenfei Feng, Chenglian Jin, Xiaowei Wang, Fangkun Liu, Cong Li, Na Qiao, Yu Bai, Yingchen Wu, Fengchang Giesy, John P. Environ Sci Ecotechnol Original Research Organophosphate esters (OPEs) are widespread in various environmental media, and can disrupt thyroid endocrine signaling pathways. Mechanisms by which OPEs disrupt thyroid hormone (TH) signal transduction are not fully understood. Here, we present in vivo-in vitro-in silico evidence establishing OPEs as environmental THs competitively entering the brain to inhibit growth of zebrafish via multiple signaling pathways. OPEs can bind to transthyretin (TTR) and thyroxine-binding globulin, thereby affecting the transport of TH in the blood, and to the brain by TTR through the blood–brain barrier. When GH3 cells were exposed to OPEs, cell proliferation was significantly inhibited given that OPEs are competitive inhibitors of TH. Cresyl diphenyl phosphate was shown to be an effective antagonist of TH. Chronic exposure to OPEs significantly inhibited the growth of zebrafish by interfering with thyroperoxidase and thyroglobulin to inhibit TH synthesis. Based on comparisons of modulations of gene expression with the Gene Ontology and Kyoto Encyclopedia of Genes and Genomes databases, signaling pathways related to thyroid endocrine functions, such as receptor–ligand binding and regulation of hormone levels, were identified as being affected by exposure to OPEs. Effects were also associated with the biosynthesis and metabolism of lipids, and neuroactive ligand–receptor interactions. These findings provide a comprehensive understanding of the mechanisms by which OPEs disrupt thyroid pathways in zebrafish. Elsevier 2022-06-06 /pmc/articles/PMC9500371/ /pubmed/36157343 http://dx.doi.org/10.1016/j.ese.2022.100198 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Yan, Zhenfei
Feng, Chenglian
Jin, Xiaowei
Wang, Fangkun
Liu, Cong
Li, Na
Qiao, Yu
Bai, Yingchen
Wu, Fengchang
Giesy, John P.
Organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain
title Organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain
title_full Organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain
title_fullStr Organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain
title_full_unstemmed Organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain
title_short Organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain
title_sort organophosphate esters cause thyroid dysfunction via multiple signaling pathways in zebrafish brain
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9500371/
https://www.ncbi.nlm.nih.gov/pubmed/36157343
http://dx.doi.org/10.1016/j.ese.2022.100198
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