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Bisphenol A increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro

Bisphenol A (BPA) is the most common monomer in polycarbonate plastics and an endocrine disruptor. Though some effects of BPA on thyroid hormone (TH) synthesis and action have been described, the impact of this compound on thyroid H(2)O(2) generation remains elusive. H(2)O(2) is a reactive oxygen sp...

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Autores principales: da Silva, Maurício Martins, Xavier, Lueni Lopes Felix, Gonçalves, Carlos Frederico Lima, Santos-Silva, Ana Paula, Paiva-Melo, Francisca Diana, de Freitas, Mariana Lopes, Fortunato, Rodrigo Soares, Miranda-Alves, Leandro, Ferreira, Andrea Claudia Freitas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6215800/
https://www.ncbi.nlm.nih.gov/pubmed/30352396
http://dx.doi.org/10.1530/EC-18-0348
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author da Silva, Maurício Martins
Xavier, Lueni Lopes Felix
Gonçalves, Carlos Frederico Lima
Santos-Silva, Ana Paula
Paiva-Melo, Francisca Diana
de Freitas, Mariana Lopes
Fortunato, Rodrigo Soares
Miranda-Alves, Leandro
Ferreira, Andrea Claudia Freitas
author_facet da Silva, Maurício Martins
Xavier, Lueni Lopes Felix
Gonçalves, Carlos Frederico Lima
Santos-Silva, Ana Paula
Paiva-Melo, Francisca Diana
de Freitas, Mariana Lopes
Fortunato, Rodrigo Soares
Miranda-Alves, Leandro
Ferreira, Andrea Claudia Freitas
author_sort da Silva, Maurício Martins
collection PubMed
description Bisphenol A (BPA) is the most common monomer in polycarbonate plastics and an endocrine disruptor. Though some effects of BPA on thyroid hormone (TH) synthesis and action have been described, the impact of this compound on thyroid H(2)O(2) generation remains elusive. H(2)O(2) is a reactive oxygen species (ROS), which could have deleterious effect on thyrocytes if in excess. Therefore, herein we aimed at evaluating the effect of BPA exposition both in vivo and in vitro on H(2)O(2) generation in thyrocytes, besides other essential steps for TH synthesis. Female Wistar rats were treated with vehicle (control) or BPA 40 mg/kg BW for 15 days, by gavage. We then evaluated thyroid iodide uptake, mediated by sodium-iodide symporter (NIS), thyroperoxidase (TPO) and dual oxidase (DOUX) activities (H(2)O(2) generation). Hydrogen peroxide generation was increased, while iodide uptake and TPO activity were reduced by BPA exposition. We have also incubated the rat thyroid cell line PCCL3 with 10(−9) M BPA and evaluated Nis and Duox mRNA levels, besides H(2)O(2) generation. Similar to that found in vivo, BPA treatment also led to increased H(2)O(2) generation in PCCL3. Nis mRNA levels were reduced and Duox2 mRNA levels were increased in BPA-exposed cells. To evaluate the importance of oxidative stress on BPA-induced Nis reduction, PCCL3 was treated with BPA in association to N-acetylcysteine, an antioxidant, which reversed the effect of BPA on Nis. Our data suggest that BPA increases ROS production in thyrocytes, what could lead to oxidative damage thus possibly predisposing to thyroid disease.
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spelling pubmed-62158002018-11-07 Bisphenol A increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro da Silva, Maurício Martins Xavier, Lueni Lopes Felix Gonçalves, Carlos Frederico Lima Santos-Silva, Ana Paula Paiva-Melo, Francisca Diana de Freitas, Mariana Lopes Fortunato, Rodrigo Soares Miranda-Alves, Leandro Ferreira, Andrea Claudia Freitas Endocr Connect Research Bisphenol A (BPA) is the most common monomer in polycarbonate plastics and an endocrine disruptor. Though some effects of BPA on thyroid hormone (TH) synthesis and action have been described, the impact of this compound on thyroid H(2)O(2) generation remains elusive. H(2)O(2) is a reactive oxygen species (ROS), which could have deleterious effect on thyrocytes if in excess. Therefore, herein we aimed at evaluating the effect of BPA exposition both in vivo and in vitro on H(2)O(2) generation in thyrocytes, besides other essential steps for TH synthesis. Female Wistar rats were treated with vehicle (control) or BPA 40 mg/kg BW for 15 days, by gavage. We then evaluated thyroid iodide uptake, mediated by sodium-iodide symporter (NIS), thyroperoxidase (TPO) and dual oxidase (DOUX) activities (H(2)O(2) generation). Hydrogen peroxide generation was increased, while iodide uptake and TPO activity were reduced by BPA exposition. We have also incubated the rat thyroid cell line PCCL3 with 10(−9) M BPA and evaluated Nis and Duox mRNA levels, besides H(2)O(2) generation. Similar to that found in vivo, BPA treatment also led to increased H(2)O(2) generation in PCCL3. Nis mRNA levels were reduced and Duox2 mRNA levels were increased in BPA-exposed cells. To evaluate the importance of oxidative stress on BPA-induced Nis reduction, PCCL3 was treated with BPA in association to N-acetylcysteine, an antioxidant, which reversed the effect of BPA on Nis. Our data suggest that BPA increases ROS production in thyrocytes, what could lead to oxidative damage thus possibly predisposing to thyroid disease. Bioscientifica Ltd 2018-09-25 /pmc/articles/PMC6215800/ /pubmed/30352396 http://dx.doi.org/10.1530/EC-18-0348 Text en © 2018 The authors http://creativecommons.org/licenses/by-nc/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (http://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Research
da Silva, Maurício Martins
Xavier, Lueni Lopes Felix
Gonçalves, Carlos Frederico Lima
Santos-Silva, Ana Paula
Paiva-Melo, Francisca Diana
de Freitas, Mariana Lopes
Fortunato, Rodrigo Soares
Miranda-Alves, Leandro
Ferreira, Andrea Claudia Freitas
Bisphenol A increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro
title Bisphenol A increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro
title_full Bisphenol A increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro
title_fullStr Bisphenol A increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro
title_full_unstemmed Bisphenol A increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro
title_short Bisphenol A increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro
title_sort bisphenol a increases hydrogen peroxide generation by thyrocytes both in vivo and in vitro
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6215800/
https://www.ncbi.nlm.nih.gov/pubmed/30352396
http://dx.doi.org/10.1530/EC-18-0348
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