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Dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment

Reprogramming of metabolism is a well-established property of cancer cells that is receiving growing attention as potential therapeutic target. Oral squamous cell carcinomas (OSCC) are aggressive and drugs-resistant human tumours displaying wide metabolic heterogeneity depending on their malignant g...

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Autores principales: Ruggieri, Vitalba, Agriesti, Francesca, Scrima, Rosella, Laurenzana, Ilaria, Perrone, Donatella, Tataranni, Tiziana, Mazzoccoli, Carmela, Lo Muzio, Lorenzo, Capitanio, Nazzareno, Piccoli, Claudia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4359228/
https://www.ncbi.nlm.nih.gov/pubmed/25544754
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author Ruggieri, Vitalba
Agriesti, Francesca
Scrima, Rosella
Laurenzana, Ilaria
Perrone, Donatella
Tataranni, Tiziana
Mazzoccoli, Carmela
Lo Muzio, Lorenzo
Capitanio, Nazzareno
Piccoli, Claudia
author_facet Ruggieri, Vitalba
Agriesti, Francesca
Scrima, Rosella
Laurenzana, Ilaria
Perrone, Donatella
Tataranni, Tiziana
Mazzoccoli, Carmela
Lo Muzio, Lorenzo
Capitanio, Nazzareno
Piccoli, Claudia
author_sort Ruggieri, Vitalba
collection PubMed
description Reprogramming of metabolism is a well-established property of cancer cells that is receiving growing attention as potential therapeutic target. Oral squamous cell carcinomas (OSCC) are aggressive and drugs-resistant human tumours displaying wide metabolic heterogeneity depending on their malignant genotype and stage of development. Dichloroacetate (DCA) is a specific inhibitor of the PDH-regulator PDK proved to foster mitochondrial oxidation of pyruvate. In this study we tested comparatively the effects of DCA on three different OSCC-derived cell lines, HSC-2, HSC-3, PE15. Characterization of the three cell lines unveiled for HSC-2 and HSC-3 a glycolysis-reliant metabolism whereas PE15 accomplished an efficient mitochondrial oxidative phosphorylation. DCA treatment of the three OSCC cell lines, at pharmacological concentrations, resulted in stimulation of the respiratory activity and caused a remarkably distinctive pro-apoptotic/cytostatic effect on HSC-2 and HSC-3. This was accompanied with a large remodeling of the mitochondrial network, never documented before, leading to organelle fragmentation and with enhanced production of reactive oxygen species. The data here presented indicate that the therapeutic efficacy of DCA may depend on the specific metabolic profile adopted by the cancer cells with those exhibiting a deficient mitochondrial oxidative phosphorylation resulting more sensitive to the drug treatment.
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spelling pubmed-43592282015-03-27 Dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment Ruggieri, Vitalba Agriesti, Francesca Scrima, Rosella Laurenzana, Ilaria Perrone, Donatella Tataranni, Tiziana Mazzoccoli, Carmela Lo Muzio, Lorenzo Capitanio, Nazzareno Piccoli, Claudia Oncotarget Research Paper Reprogramming of metabolism is a well-established property of cancer cells that is receiving growing attention as potential therapeutic target. Oral squamous cell carcinomas (OSCC) are aggressive and drugs-resistant human tumours displaying wide metabolic heterogeneity depending on their malignant genotype and stage of development. Dichloroacetate (DCA) is a specific inhibitor of the PDH-regulator PDK proved to foster mitochondrial oxidation of pyruvate. In this study we tested comparatively the effects of DCA on three different OSCC-derived cell lines, HSC-2, HSC-3, PE15. Characterization of the three cell lines unveiled for HSC-2 and HSC-3 a glycolysis-reliant metabolism whereas PE15 accomplished an efficient mitochondrial oxidative phosphorylation. DCA treatment of the three OSCC cell lines, at pharmacological concentrations, resulted in stimulation of the respiratory activity and caused a remarkably distinctive pro-apoptotic/cytostatic effect on HSC-2 and HSC-3. This was accompanied with a large remodeling of the mitochondrial network, never documented before, leading to organelle fragmentation and with enhanced production of reactive oxygen species. The data here presented indicate that the therapeutic efficacy of DCA may depend on the specific metabolic profile adopted by the cancer cells with those exhibiting a deficient mitochondrial oxidative phosphorylation resulting more sensitive to the drug treatment. Impact Journals LLC 2014-12-08 /pmc/articles/PMC4359228/ /pubmed/25544754 Text en Copyright: © 2015 Ruggieri et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Ruggieri, Vitalba
Agriesti, Francesca
Scrima, Rosella
Laurenzana, Ilaria
Perrone, Donatella
Tataranni, Tiziana
Mazzoccoli, Carmela
Lo Muzio, Lorenzo
Capitanio, Nazzareno
Piccoli, Claudia
Dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment
title Dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment
title_full Dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment
title_fullStr Dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment
title_full_unstemmed Dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment
title_short Dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment
title_sort dichloroacetate, a selective mitochondria-targeting drug for oral squamous cell carcinoma: a metabolic perspective of treatment
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4359228/
https://www.ncbi.nlm.nih.gov/pubmed/25544754
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