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Iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through NIS overexpression on cholangiocarcinoma

Cholangiocarcinoma (CC) is an aggressive liver tumor with limited therapeutic options. Natrium-iodide symporter (NIS) mediates the uptake of iodine by the thyroid, representing a key component in metabolic radiotherapy using iodine-131 ((131)I) for the treatment of thyroid cancer. NIS expression is...

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Autores principales: Brito, Ana Filipa, Abrantes, Ana Margarida, Teixo, Ricardo, Pires, Ana Salomé, Ribeiro, Ana Cláudia, Ferreira, Rafael Fernandes, Mascarenhas, Alexandra, Puga, Tiago, Laranjo, Mafalda, Caramelo, Francisco, Boin, Ilka, Jefferson, Douglas M., Gonçalves, Cristina, Martins, Ricardo, Tavares, Inês, Ribeiro, Ilda Patrícia, Sarmento-Ribeiro, Ana Bela, Ferreira, Isabel Marques, Souza, Doroteia, Tralhão, José Guilherme, Botelho, Maria Filomena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7010220/
https://www.ncbi.nlm.nih.gov/pubmed/31922240
http://dx.doi.org/10.3892/ijo.2020.4957
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author Brito, Ana Filipa
Abrantes, Ana Margarida
Teixo, Ricardo
Pires, Ana Salomé
Ribeiro, Ana Cláudia
Ferreira, Rafael Fernandes
Mascarenhas, Alexandra
Puga, Tiago
Laranjo, Mafalda
Caramelo, Francisco
Boin, Ilka
Jefferson, Douglas M.
Gonçalves, Cristina
Martins, Ricardo
Tavares, Inês
Ribeiro, Ilda Patrícia
Sarmento-Ribeiro, Ana Bela
Ferreira, Isabel Marques
Souza, Doroteia
Tralhão, José Guilherme
Botelho, Maria Filomena
author_facet Brito, Ana Filipa
Abrantes, Ana Margarida
Teixo, Ricardo
Pires, Ana Salomé
Ribeiro, Ana Cláudia
Ferreira, Rafael Fernandes
Mascarenhas, Alexandra
Puga, Tiago
Laranjo, Mafalda
Caramelo, Francisco
Boin, Ilka
Jefferson, Douglas M.
Gonçalves, Cristina
Martins, Ricardo
Tavares, Inês
Ribeiro, Ilda Patrícia
Sarmento-Ribeiro, Ana Bela
Ferreira, Isabel Marques
Souza, Doroteia
Tralhão, José Guilherme
Botelho, Maria Filomena
author_sort Brito, Ana Filipa
collection PubMed
description Cholangiocarcinoma (CC) is an aggressive liver tumor with limited therapeutic options. Natrium-iodide symporter (NIS) mediates the uptake of iodine by the thyroid, representing a key component in metabolic radiotherapy using iodine-131 ((131)I) for the treatment of thyroid cancer. NIS expression is increased in CC, providing the opportunity for a novel therapeutic approach for this type of tumor. Thus, in this study, we aimed to evaluate therapeutic efficacy of (131)I in two human CC cell lines. Uptake experiments analyzed the (131)I uptake profiles of the tumor cell lines under study. The cells were irradiated with various doses of (131)I to evaluate and characterize the effects of metabolic radiotherapy. NIS protein expression was assessed by immunofluorescence methods. Cell survival was evaluated by clonogenic assay and flow cytometry was used to assess cell viability, and the type of death and alterations in the cell cycle. The genomic and epigenetic characterization of both CC cells was performed before and after irradiation. NIS gene expression was evaluated in the CC cells by RT-qPCR. The results revealed that CC cells had a higher expression of NIS. (131)I induced a decrease in cell survival in a dose-dependent manner. With the increasing irradiation dose, a decrease in cell viability was observed, with a consequent increase in cell death by initial apoptosis. Karyotype and array comparative genomic hybridization (aCGH) analyses revealed that both CC cell lines were near-triploid with several numerical and structural chromosomal rearrangements. NIS gene expression was increased in the TFK-1 and HuCCT1 cells in a time-dependent manner. On the whole, the findings of this study demonstrate that the presence of NIS in cholangiocarcinoma cell lines is crucial for the decreased cell viability and survival observed following the exposure of cholangiocarcinoma cells to (131)I.
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spelling pubmed-70102202020-02-14 Iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through NIS overexpression on cholangiocarcinoma Brito, Ana Filipa Abrantes, Ana Margarida Teixo, Ricardo Pires, Ana Salomé Ribeiro, Ana Cláudia Ferreira, Rafael Fernandes Mascarenhas, Alexandra Puga, Tiago Laranjo, Mafalda Caramelo, Francisco Boin, Ilka Jefferson, Douglas M. Gonçalves, Cristina Martins, Ricardo Tavares, Inês Ribeiro, Ilda Patrícia Sarmento-Ribeiro, Ana Bela Ferreira, Isabel Marques Souza, Doroteia Tralhão, José Guilherme Botelho, Maria Filomena Int J Oncol Articles Cholangiocarcinoma (CC) is an aggressive liver tumor with limited therapeutic options. Natrium-iodide symporter (NIS) mediates the uptake of iodine by the thyroid, representing a key component in metabolic radiotherapy using iodine-131 ((131)I) for the treatment of thyroid cancer. NIS expression is increased in CC, providing the opportunity for a novel therapeutic approach for this type of tumor. Thus, in this study, we aimed to evaluate therapeutic efficacy of (131)I in two human CC cell lines. Uptake experiments analyzed the (131)I uptake profiles of the tumor cell lines under study. The cells were irradiated with various doses of (131)I to evaluate and characterize the effects of metabolic radiotherapy. NIS protein expression was assessed by immunofluorescence methods. Cell survival was evaluated by clonogenic assay and flow cytometry was used to assess cell viability, and the type of death and alterations in the cell cycle. The genomic and epigenetic characterization of both CC cells was performed before and after irradiation. NIS gene expression was evaluated in the CC cells by RT-qPCR. The results revealed that CC cells had a higher expression of NIS. (131)I induced a decrease in cell survival in a dose-dependent manner. With the increasing irradiation dose, a decrease in cell viability was observed, with a consequent increase in cell death by initial apoptosis. Karyotype and array comparative genomic hybridization (aCGH) analyses revealed that both CC cell lines were near-triploid with several numerical and structural chromosomal rearrangements. NIS gene expression was increased in the TFK-1 and HuCCT1 cells in a time-dependent manner. On the whole, the findings of this study demonstrate that the presence of NIS in cholangiocarcinoma cell lines is crucial for the decreased cell viability and survival observed following the exposure of cholangiocarcinoma cells to (131)I. D.A. Spandidos 2020-01-10 /pmc/articles/PMC7010220/ /pubmed/31922240 http://dx.doi.org/10.3892/ijo.2020.4957 Text en Copyright: © Brito et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Brito, Ana Filipa
Abrantes, Ana Margarida
Teixo, Ricardo
Pires, Ana Salomé
Ribeiro, Ana Cláudia
Ferreira, Rafael Fernandes
Mascarenhas, Alexandra
Puga, Tiago
Laranjo, Mafalda
Caramelo, Francisco
Boin, Ilka
Jefferson, Douglas M.
Gonçalves, Cristina
Martins, Ricardo
Tavares, Inês
Ribeiro, Ilda Patrícia
Sarmento-Ribeiro, Ana Bela
Ferreira, Isabel Marques
Souza, Doroteia
Tralhão, José Guilherme
Botelho, Maria Filomena
Iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through NIS overexpression on cholangiocarcinoma
title Iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through NIS overexpression on cholangiocarcinoma
title_full Iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through NIS overexpression on cholangiocarcinoma
title_fullStr Iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through NIS overexpression on cholangiocarcinoma
title_full_unstemmed Iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through NIS overexpression on cholangiocarcinoma
title_short Iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through NIS overexpression on cholangiocarcinoma
title_sort iodine-131 metabolic radiotherapy leads to cell death and genomic alterations through nis overexpression on cholangiocarcinoma
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7010220/
https://www.ncbi.nlm.nih.gov/pubmed/31922240
http://dx.doi.org/10.3892/ijo.2020.4957
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