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Short Interfering RNA Directed against the SLUG Gene Increases Cell Death Induction in Human Melanoma Cell Lines Exposed to Cisplatin and Fotemustine

Background: Melanoma remains largely resistant to currently available chemotherapy, and new strategies have been proposed to flank standardized therapeutic protocols in an effort to improve efficacy. Such an approach requires good knowledge of the mechanisms involved in the resistance and survival o...

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Autores principales: Vannini, Ivan, Bonafe, Massimiliano, Tesei, Anna, Rosetti, Marco, Fabbri, Francesco, Storci, Gianluca, Ulivi, Paola, Brigliadori, Giovanni, Amadori, Dino, Zoli, Wainer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOS Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4617797/
https://www.ncbi.nlm.nih.gov/pubmed/17641412
http://dx.doi.org/10.1155/2007/540821
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author Vannini, Ivan
Bonafe, Massimiliano
Tesei, Anna
Rosetti, Marco
Fabbri, Francesco
Storci, Gianluca
Ulivi, Paola
Brigliadori, Giovanni
Amadori, Dino
Zoli, Wainer
author_facet Vannini, Ivan
Bonafe, Massimiliano
Tesei, Anna
Rosetti, Marco
Fabbri, Francesco
Storci, Gianluca
Ulivi, Paola
Brigliadori, Giovanni
Amadori, Dino
Zoli, Wainer
author_sort Vannini, Ivan
collection PubMed
description Background: Melanoma remains largely resistant to currently available chemotherapy, and new strategies have been proposed to flank standardized therapeutic protocols in an effort to improve efficacy. Such an approach requires good knowledge of the mechanisms involved in the resistance and survival of melanoma cells. In this context, the SLUG gene has recently been characterized as a major regulator of melanocytes and melanoma cell survival. Methods: We tested the hypothesis that an oligonucleotide-based short interfering RNA (siRNA) directed against the SLUG gene increases the susceptibility of melanoma cells to drugs such as cisplatin and fotemustine, which are frequently used to treat this cancer. Results: It was found that SLUG siRNA increased cisplatin-induced cell death and rendered the drug active in vitro at half its plasmatic peak concentration. Such activity was correlated with an upregulation of the pro-apoptotic gene, PUMA. Furthermore, SLUG siRNA increased the capacity of fotemustine to elicit cell death and induced p21WAF1 upregulation, resulting in cell cycle arrest. Interestingly, this pathway did not require functional p53. Conclusion: These findings suggest that SLUG siRNA enhances the efficacy of two of the most widely used drugs to treat melanoma.
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spelling pubmed-46177972016-01-12 Short Interfering RNA Directed against the SLUG Gene Increases Cell Death Induction in Human Melanoma Cell Lines Exposed to Cisplatin and Fotemustine Vannini, Ivan Bonafe, Massimiliano Tesei, Anna Rosetti, Marco Fabbri, Francesco Storci, Gianluca Ulivi, Paola Brigliadori, Giovanni Amadori, Dino Zoli, Wainer Cell Oncol Other Background: Melanoma remains largely resistant to currently available chemotherapy, and new strategies have been proposed to flank standardized therapeutic protocols in an effort to improve efficacy. Such an approach requires good knowledge of the mechanisms involved in the resistance and survival of melanoma cells. In this context, the SLUG gene has recently been characterized as a major regulator of melanocytes and melanoma cell survival. Methods: We tested the hypothesis that an oligonucleotide-based short interfering RNA (siRNA) directed against the SLUG gene increases the susceptibility of melanoma cells to drugs such as cisplatin and fotemustine, which are frequently used to treat this cancer. Results: It was found that SLUG siRNA increased cisplatin-induced cell death and rendered the drug active in vitro at half its plasmatic peak concentration. Such activity was correlated with an upregulation of the pro-apoptotic gene, PUMA. Furthermore, SLUG siRNA increased the capacity of fotemustine to elicit cell death and induced p21WAF1 upregulation, resulting in cell cycle arrest. Interestingly, this pathway did not require functional p53. Conclusion: These findings suggest that SLUG siRNA enhances the efficacy of two of the most widely used drugs to treat melanoma. IOS Press 2007 2007-07-05 /pmc/articles/PMC4617797/ /pubmed/17641412 http://dx.doi.org/10.1155/2007/540821 Text en Copyright © 2007 Hindawi Publishing Corporation and the authors.
spellingShingle Other
Vannini, Ivan
Bonafe, Massimiliano
Tesei, Anna
Rosetti, Marco
Fabbri, Francesco
Storci, Gianluca
Ulivi, Paola
Brigliadori, Giovanni
Amadori, Dino
Zoli, Wainer
Short Interfering RNA Directed against the SLUG Gene Increases Cell Death Induction in Human Melanoma Cell Lines Exposed to Cisplatin and Fotemustine
title Short Interfering RNA Directed against the SLUG Gene Increases Cell Death Induction in Human Melanoma Cell Lines Exposed to Cisplatin and Fotemustine
title_full Short Interfering RNA Directed against the SLUG Gene Increases Cell Death Induction in Human Melanoma Cell Lines Exposed to Cisplatin and Fotemustine
title_fullStr Short Interfering RNA Directed against the SLUG Gene Increases Cell Death Induction in Human Melanoma Cell Lines Exposed to Cisplatin and Fotemustine
title_full_unstemmed Short Interfering RNA Directed against the SLUG Gene Increases Cell Death Induction in Human Melanoma Cell Lines Exposed to Cisplatin and Fotemustine
title_short Short Interfering RNA Directed against the SLUG Gene Increases Cell Death Induction in Human Melanoma Cell Lines Exposed to Cisplatin and Fotemustine
title_sort short interfering rna directed against the slug gene increases cell death induction in human melanoma cell lines exposed to cisplatin and fotemustine
topic Other
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4617797/
https://www.ncbi.nlm.nih.gov/pubmed/17641412
http://dx.doi.org/10.1155/2007/540821
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