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Highly efficient radiosensitization of human glioblastoma and lung cancer cells by a G-quadruplex DNA binding compound

Telomeres are nucleoprotein structures at the end of chromosomes which stabilize and protect them from nucleotidic degradation and end-to-end fusions. The G-rich telomeric single-stranded DNA overhang can adopt a four-stranded G-quadruplex DNA structure (G4). Stabilization of the G4 structure by bin...

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Autores principales: Merle, Patrick, Gueugneau, Marine, Teulade-Fichou, Marie-Paule, Müller-Barthélémy, Mélanie, Amiard, Simon, Chautard, Emmanuel, Guetta, Corinne, Dedieu, Véronique, Communal, Yves, Mergny, Jean-Louis, Gallego, Maria, White, Charles, Verrelle, Pierre, Tchirkov, Andreï
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4635363/
https://www.ncbi.nlm.nih.gov/pubmed/26542881
http://dx.doi.org/10.1038/srep16255
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author Merle, Patrick
Gueugneau, Marine
Teulade-Fichou, Marie-Paule
Müller-Barthélémy, Mélanie
Amiard, Simon
Chautard, Emmanuel
Guetta, Corinne
Dedieu, Véronique
Communal, Yves
Mergny, Jean-Louis
Gallego, Maria
White, Charles
Verrelle, Pierre
Tchirkov, Andreï
author_facet Merle, Patrick
Gueugneau, Marine
Teulade-Fichou, Marie-Paule
Müller-Barthélémy, Mélanie
Amiard, Simon
Chautard, Emmanuel
Guetta, Corinne
Dedieu, Véronique
Communal, Yves
Mergny, Jean-Louis
Gallego, Maria
White, Charles
Verrelle, Pierre
Tchirkov, Andreï
author_sort Merle, Patrick
collection PubMed
description Telomeres are nucleoprotein structures at the end of chromosomes which stabilize and protect them from nucleotidic degradation and end-to-end fusions. The G-rich telomeric single-stranded DNA overhang can adopt a four-stranded G-quadruplex DNA structure (G4). Stabilization of the G4 structure by binding of small molecule ligands enhances radiosensitivity of tumor cells, and this combined treatment represents a novel anticancer approach. We studied the effect of the platinum-derived G4-ligand, Pt-ctpy, in association with radiation on human glioblastoma (SF763 and SF767) and non-small cell lung cancer (A549 and H1299) cells in vitro and in vivo. Treatments with submicromolar concentrations of Pt-ctpy inhibited tumor proliferation in vitro with cell cycle alterations and induction of apoptosis. Non-toxic concentrations of the ligand were then combined with ionizing radiation. Pt-ctpy radiosensitized all cell lines with dose-enhancement factors between 1.32 and 1.77. The combined treatment led to increased DNA breaks. Furthermore, a significant radiosensitizing effect of Pt-ctpy in mice xenografted with glioblastoma SF763 cells was shown by delayed tumor growth and improved survival. Pt-ctpy can act in synergy with radiation for efficient killing of cancer cells at concentrations at which it has no obvious toxicity per se, opening perspectives for future therapeutic applications.
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spelling pubmed-46353632015-11-25 Highly efficient radiosensitization of human glioblastoma and lung cancer cells by a G-quadruplex DNA binding compound Merle, Patrick Gueugneau, Marine Teulade-Fichou, Marie-Paule Müller-Barthélémy, Mélanie Amiard, Simon Chautard, Emmanuel Guetta, Corinne Dedieu, Véronique Communal, Yves Mergny, Jean-Louis Gallego, Maria White, Charles Verrelle, Pierre Tchirkov, Andreï Sci Rep Article Telomeres are nucleoprotein structures at the end of chromosomes which stabilize and protect them from nucleotidic degradation and end-to-end fusions. The G-rich telomeric single-stranded DNA overhang can adopt a four-stranded G-quadruplex DNA structure (G4). Stabilization of the G4 structure by binding of small molecule ligands enhances radiosensitivity of tumor cells, and this combined treatment represents a novel anticancer approach. We studied the effect of the platinum-derived G4-ligand, Pt-ctpy, in association with radiation on human glioblastoma (SF763 and SF767) and non-small cell lung cancer (A549 and H1299) cells in vitro and in vivo. Treatments with submicromolar concentrations of Pt-ctpy inhibited tumor proliferation in vitro with cell cycle alterations and induction of apoptosis. Non-toxic concentrations of the ligand were then combined with ionizing radiation. Pt-ctpy radiosensitized all cell lines with dose-enhancement factors between 1.32 and 1.77. The combined treatment led to increased DNA breaks. Furthermore, a significant radiosensitizing effect of Pt-ctpy in mice xenografted with glioblastoma SF763 cells was shown by delayed tumor growth and improved survival. Pt-ctpy can act in synergy with radiation for efficient killing of cancer cells at concentrations at which it has no obvious toxicity per se, opening perspectives for future therapeutic applications. Nature Publishing Group 2015-11-06 /pmc/articles/PMC4635363/ /pubmed/26542881 http://dx.doi.org/10.1038/srep16255 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Merle, Patrick
Gueugneau, Marine
Teulade-Fichou, Marie-Paule
Müller-Barthélémy, Mélanie
Amiard, Simon
Chautard, Emmanuel
Guetta, Corinne
Dedieu, Véronique
Communal, Yves
Mergny, Jean-Louis
Gallego, Maria
White, Charles
Verrelle, Pierre
Tchirkov, Andreï
Highly efficient radiosensitization of human glioblastoma and lung cancer cells by a G-quadruplex DNA binding compound
title Highly efficient radiosensitization of human glioblastoma and lung cancer cells by a G-quadruplex DNA binding compound
title_full Highly efficient radiosensitization of human glioblastoma and lung cancer cells by a G-quadruplex DNA binding compound
title_fullStr Highly efficient radiosensitization of human glioblastoma and lung cancer cells by a G-quadruplex DNA binding compound
title_full_unstemmed Highly efficient radiosensitization of human glioblastoma and lung cancer cells by a G-quadruplex DNA binding compound
title_short Highly efficient radiosensitization of human glioblastoma and lung cancer cells by a G-quadruplex DNA binding compound
title_sort highly efficient radiosensitization of human glioblastoma and lung cancer cells by a g-quadruplex dna binding compound
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4635363/
https://www.ncbi.nlm.nih.gov/pubmed/26542881
http://dx.doi.org/10.1038/srep16255
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