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Novel Phenazine 5,10-Dioxides Release (•)OH in Simulated Hypoxia and Induce Reduction of Tumour Volume In Vivo
Phenazine 5,10-dioxides (PDOs) are a new class of bioreductive cytotoxins, which could act towards tumours containing hypoxic regions. The PDOs selective-hypoxic bioreduction was probed in vitro; however, the mechanism of action has not been completely explained. Besides, PDOs in vivo antitumour act...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
International Scholarly Research Network
2011
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3196961/ https://www.ncbi.nlm.nih.gov/pubmed/22084710 http://dx.doi.org/10.5402/2011/314209 |
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author | Lavaggi, María L. Cabrera, Mauricio Pintos, Cristina Arredondo, Carolina Pachón, Gisela Rodríguez, Jorge Raymondo, Stella Pacheco, José Pedro Cascante, Marta Olea-Azar, Claudio López de Ceráin, Adela Monge, Antonio Cerecetto, Hugo González, Mercedes |
author_facet | Lavaggi, María L. Cabrera, Mauricio Pintos, Cristina Arredondo, Carolina Pachón, Gisela Rodríguez, Jorge Raymondo, Stella Pacheco, José Pedro Cascante, Marta Olea-Azar, Claudio López de Ceráin, Adela Monge, Antonio Cerecetto, Hugo González, Mercedes |
author_sort | Lavaggi, María L. |
collection | PubMed |
description | Phenazine 5,10-dioxides (PDOs) are a new class of bioreductive cytotoxins, which could act towards tumours containing hypoxic regions. The PDOs selective-hypoxic bioreduction was probed in vitro; however, the mechanism of action has not been completely explained. Besides, PDOs in vivo antitumour activities have not been demonstrated hitherto. We study the mechanism of hypoxic/normoxic cytotoxicity of PDO representative members. Electron spin resonance is used to confirm (•)OH production, alkaline comet assay to determine genotoxicity, and gel electrophoresis and flow cytometry to analyze DNA fragmentation and cell cycle distribution. Chemically induced rat breast tumours are employed to evaluate in vivo activities. For the most selective cytotoxin, 7(8)-bromo-2-hydroxyphenazine 5,10-dioxide (PDO1), exclusive hypoxic (•)OH production is evidenced, while for the unselective ones, (•)OH is produced in both conditions (normoxia and simulated hypoxia). In normoxia (Caco-2 cells), PDO1 induces cell-cycle arrest and DNA fragmentation but does not significantly induce apoptosis neither at IC(50) nor IC(80). No difference in the comet-assay scores are observed in normoxia and simulated hypoxia being the unselective 2-amino-7(8)-bromophenazine 5,10-dioxide (PDO2) the most genotoxic. The in vivo efficacy with the absence of systemic toxicity of PDO1 and PDO2 is checked out. Results from this study highlight the potential of PDOs as new therapeutics for cancer. |
format | Online Article Text |
id | pubmed-3196961 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | International Scholarly Research Network |
record_format | MEDLINE/PubMed |
spelling | pubmed-31969612011-11-14 Novel Phenazine 5,10-Dioxides Release (•)OH in Simulated Hypoxia and Induce Reduction of Tumour Volume In Vivo Lavaggi, María L. Cabrera, Mauricio Pintos, Cristina Arredondo, Carolina Pachón, Gisela Rodríguez, Jorge Raymondo, Stella Pacheco, José Pedro Cascante, Marta Olea-Azar, Claudio López de Ceráin, Adela Monge, Antonio Cerecetto, Hugo González, Mercedes ISRN Pharmacol Research Article Phenazine 5,10-dioxides (PDOs) are a new class of bioreductive cytotoxins, which could act towards tumours containing hypoxic regions. The PDOs selective-hypoxic bioreduction was probed in vitro; however, the mechanism of action has not been completely explained. Besides, PDOs in vivo antitumour activities have not been demonstrated hitherto. We study the mechanism of hypoxic/normoxic cytotoxicity of PDO representative members. Electron spin resonance is used to confirm (•)OH production, alkaline comet assay to determine genotoxicity, and gel electrophoresis and flow cytometry to analyze DNA fragmentation and cell cycle distribution. Chemically induced rat breast tumours are employed to evaluate in vivo activities. For the most selective cytotoxin, 7(8)-bromo-2-hydroxyphenazine 5,10-dioxide (PDO1), exclusive hypoxic (•)OH production is evidenced, while for the unselective ones, (•)OH is produced in both conditions (normoxia and simulated hypoxia). In normoxia (Caco-2 cells), PDO1 induces cell-cycle arrest and DNA fragmentation but does not significantly induce apoptosis neither at IC(50) nor IC(80). No difference in the comet-assay scores are observed in normoxia and simulated hypoxia being the unselective 2-amino-7(8)-bromophenazine 5,10-dioxide (PDO2) the most genotoxic. The in vivo efficacy with the absence of systemic toxicity of PDO1 and PDO2 is checked out. Results from this study highlight the potential of PDOs as new therapeutics for cancer. International Scholarly Research Network 2011 2011-06-22 /pmc/articles/PMC3196961/ /pubmed/22084710 http://dx.doi.org/10.5402/2011/314209 Text en Copyright © 2011 María L. Lavaggi et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Lavaggi, María L. Cabrera, Mauricio Pintos, Cristina Arredondo, Carolina Pachón, Gisela Rodríguez, Jorge Raymondo, Stella Pacheco, José Pedro Cascante, Marta Olea-Azar, Claudio López de Ceráin, Adela Monge, Antonio Cerecetto, Hugo González, Mercedes Novel Phenazine 5,10-Dioxides Release (•)OH in Simulated Hypoxia and Induce Reduction of Tumour Volume In Vivo |
title | Novel Phenazine 5,10-Dioxides Release (•)OH in Simulated Hypoxia and Induce Reduction of Tumour Volume In Vivo
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title_full | Novel Phenazine 5,10-Dioxides Release (•)OH in Simulated Hypoxia and Induce Reduction of Tumour Volume In Vivo
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title_fullStr | Novel Phenazine 5,10-Dioxides Release (•)OH in Simulated Hypoxia and Induce Reduction of Tumour Volume In Vivo
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title_full_unstemmed | Novel Phenazine 5,10-Dioxides Release (•)OH in Simulated Hypoxia and Induce Reduction of Tumour Volume In Vivo
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title_short | Novel Phenazine 5,10-Dioxides Release (•)OH in Simulated Hypoxia and Induce Reduction of Tumour Volume In Vivo
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title_sort | novel phenazine 5,10-dioxides release (•)oh in simulated hypoxia and induce reduction of tumour volume in vivo |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3196961/ https://www.ncbi.nlm.nih.gov/pubmed/22084710 http://dx.doi.org/10.5402/2011/314209 |
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