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Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening

The incidence of thyroid carcinoma is rapidly increasing. Although generally associated with good prognosis, a fraction of thyroid tumors are not cured by standard therapy and progress to aggressive forms for which no effective treatments are currently available. In order to identify novel therapeut...

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Autores principales: Anania, Maria Chiara, Gasparri, Fabio, Cetti, Elena, Fraietta, Ivan, Todoerti, Katia, Miranda, Claudia, Mazzoni, Mara, Re, Claudia, Colombo, Riccardo, Ukmar, Giorgio, Camisasca, Stefano, Pagliardini, Sonia, Pierotti, Marco A., Neri, Antonino, Galvani, Arturo, Greco, Angela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741478/
https://www.ncbi.nlm.nih.gov/pubmed/26431489
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author Anania, Maria Chiara
Gasparri, Fabio
Cetti, Elena
Fraietta, Ivan
Todoerti, Katia
Miranda, Claudia
Mazzoni, Mara
Re, Claudia
Colombo, Riccardo
Ukmar, Giorgio
Camisasca, Stefano
Pagliardini, Sonia
Pierotti, Marco A.
Neri, Antonino
Galvani, Arturo
Greco, Angela
author_facet Anania, Maria Chiara
Gasparri, Fabio
Cetti, Elena
Fraietta, Ivan
Todoerti, Katia
Miranda, Claudia
Mazzoni, Mara
Re, Claudia
Colombo, Riccardo
Ukmar, Giorgio
Camisasca, Stefano
Pagliardini, Sonia
Pierotti, Marco A.
Neri, Antonino
Galvani, Arturo
Greco, Angela
author_sort Anania, Maria Chiara
collection PubMed
description The incidence of thyroid carcinoma is rapidly increasing. Although generally associated with good prognosis, a fraction of thyroid tumors are not cured by standard therapy and progress to aggressive forms for which no effective treatments are currently available. In order to identify novel therapeutic targets for thyroid carcinoma, we focused on the discovery of genes essential for sustaining the oncogenic phenotype of thyroid tumor cells, but not required to the same degree for the viability of normal cells (non-oncogene addiction paradigm). We screened a siRNA oligonucleotide library targeting the human druggable genome in thyroid cancer BCPAP cell line in comparison with immortalized normal human thyrocytes (Nthy-ori 3–1). We identified a panel of hit genes whose silencing interferes with the growth of tumor cells, while sparing that of normal ones. Further analysis of three selected hit genes, namely Cyclin D1, MASTL and COPZ1, showed that they represent common vulnerabilities for thyroid tumor cells, as their inhibition reduced the viability of several thyroid tumor cell lines, regardless the histotype or oncogenic lesion. This work identified non-oncogenes essential for sustaining the phenotype of thyroid tumor cells, but not of normal cells, thus suggesting that they might represent promising targets for new therapeutic strategies.
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spelling pubmed-47414782016-03-15 Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening Anania, Maria Chiara Gasparri, Fabio Cetti, Elena Fraietta, Ivan Todoerti, Katia Miranda, Claudia Mazzoni, Mara Re, Claudia Colombo, Riccardo Ukmar, Giorgio Camisasca, Stefano Pagliardini, Sonia Pierotti, Marco A. Neri, Antonino Galvani, Arturo Greco, Angela Oncotarget Research Paper The incidence of thyroid carcinoma is rapidly increasing. Although generally associated with good prognosis, a fraction of thyroid tumors are not cured by standard therapy and progress to aggressive forms for which no effective treatments are currently available. In order to identify novel therapeutic targets for thyroid carcinoma, we focused on the discovery of genes essential for sustaining the oncogenic phenotype of thyroid tumor cells, but not required to the same degree for the viability of normal cells (non-oncogene addiction paradigm). We screened a siRNA oligonucleotide library targeting the human druggable genome in thyroid cancer BCPAP cell line in comparison with immortalized normal human thyrocytes (Nthy-ori 3–1). We identified a panel of hit genes whose silencing interferes with the growth of tumor cells, while sparing that of normal ones. Further analysis of three selected hit genes, namely Cyclin D1, MASTL and COPZ1, showed that they represent common vulnerabilities for thyroid tumor cells, as their inhibition reduced the viability of several thyroid tumor cell lines, regardless the histotype or oncogenic lesion. This work identified non-oncogenes essential for sustaining the phenotype of thyroid tumor cells, but not of normal cells, thus suggesting that they might represent promising targets for new therapeutic strategies. Impact Journals LLC 2015-09-25 /pmc/articles/PMC4741478/ /pubmed/26431489 Text en Copyright: © 2015 Anania et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Anania, Maria Chiara
Gasparri, Fabio
Cetti, Elena
Fraietta, Ivan
Todoerti, Katia
Miranda, Claudia
Mazzoni, Mara
Re, Claudia
Colombo, Riccardo
Ukmar, Giorgio
Camisasca, Stefano
Pagliardini, Sonia
Pierotti, Marco A.
Neri, Antonino
Galvani, Arturo
Greco, Angela
Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening
title Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening
title_full Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening
title_fullStr Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening
title_full_unstemmed Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening
title_short Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening
title_sort identification of thyroid tumor cell vulnerabilities through a sirna-based functional screening
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741478/
https://www.ncbi.nlm.nih.gov/pubmed/26431489
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