An ortho-carbonyl substituted hydroquinone derivative is an anticancer agent that acts by inhibiting mitochondrial bioenergetics and by inducing G2/M-phase arrest in mammary adenocarcinoma TA3
Author
dc.contributor.author
Urra, Félix A.
Author
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Martínez Cifuentes, Maximiliano
es_CL
Author
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Pavani, Mario
es_CL
Author
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Lapier, Michel
es_CL
Author
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Jaña Prado, Fabián
es_CL
Author
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Parra, Eduardo
es_CL
Author
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Maya Arango, Juan
es_CL
Author
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Pessoa Mahana, Hernán
es_CL
Author
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Ferreira Parker, Jorge
es_CL
Author
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Araya Maturana, Ramiro
es_CL
Admission date
dc.date.accessioned
2014-02-04T18:12:17Z
Available date
dc.date.available
2014-02-04T18:12:17Z
Publication date
dc.date.issued
2013
Cita de ítem
dc.identifier.citation
Toxicology and Applied Pharmacology 267 (2013) 218–227
en_US
Identifier
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doi 10.1016/j.taap.2012.12.023
Identifier
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https://repositorio.uchile.cl/handle/2250/129246
General note
dc.description
Artículo de publicación ISI
en_US
Abstract
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Tumor cells present a known metabolic reprogramming, which makes them more susceptible for a selective
cellular death by modifying its mitochondrial bioenergetics. Anticancer action of the antioxidant 9,10-
dihydroxy-4,4-dimethyl-5,8-dihydroanthracen-1(4H)-one (HQ) on mouse mammary adenocarcinoma TA3,
and its multiresistant variant TA3-MTXR, were evaluated. HQ decreased the viability of both tumor cells,
affecting slightly mammary epithelial cells. This hydroquinone blocked the electron flow through the NADH dehydrogenase
(Complex I), leading to ADP-stimulated oxygen consumption inhibition, transmembrane potential
dissipation and cellular ATP level decrease,without increasing ROS production. Duroquinol, an electron donor at
CoQ level, reversed the decrease of cell viability induced by HQ. Additionally, HQ selectively induced G2/M-phase
arrest. Taken together, our results suggest that the bioenergetic dysfunction provoked by HQ is implicated in its
anticancer action.
An ortho-carbonyl substituted hydroquinone derivative is an anticancer agent that acts by inhibiting mitochondrial bioenergetics and by inducing G2/M-phase arrest in mammary adenocarcinoma TA3