Structural modifications on the phenazine N,N′-dioxide-scaffold looking for new selective hypoxic cytotoxins
Author
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Lavaggi, María Laura
Author
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Nieves, Marcos
Author
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Cabrera, Mauricio
Author
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Olea Azar, Claudio
Author
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López de Ceráin, Adela
Author
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Monge, Antonio
Author
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Cerecetto, Hugo
Author
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González, Mercedes
Admission date
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2019-03-11T13:00:21Z
Available date
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2019-03-11T13:00:21Z
Publication date
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2010
Cita de ítem
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European Journal of Medicinal Chemistry, Volumen 45, Issue 11, 2018, Pages 5362-5369
Identifier
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02235234
Identifier
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17683254
Identifier
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10.1016/j.ejmech.2010.08.061
Identifier
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https://repositorio.uchile.cl/handle/2250/165099
Abstract
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We have identified phenazine 5,10-dioxides as prodrugs for antitumour therapy that undergo hypoxic-selective bioreduction to form cytotoxic species. Here, we investigated some structural modifications in order to find new selective hypoxic cytotoxins and to establish the structural requirements for adequate activity. Three different chemical-series were prepared and the clonogenic survival of V79 cells on aerobic and anaerobic conditions was determined. Electrochemical- and DNA-interaction studies were done for the most relevant derivatives. The new fluoro-derivative 7-fluoro-2-aminophenazine 5,10-dioxide displayed selective toxicity towards hypoxic V79 cells having adequate hypoxic cytotoxicity ratio (HCR = 6.8) and being the most potent hypoxic cytotoxins (P = 2.5 μM) described for this family of bioreductive agents. The reduction potential of the N-oxide moiety in this new fluoro-derivative was in the range for adequate bioreduction property. According to the fluorescence studies, t