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Regulation of the oxidative balance with coenzyme Q10 sensitizes human glioblastoma cells to radiation and temozolomide.

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Date

2018-04-29

Authors

Frontiñan-Rubio, Javier
Santiago-Mora, Raquel Maria
Nieva-Velasco, Consuelo Maria
Ferrin, Gustavo
Martinez-Gonzalez, Alicia
Gomez, Maria Victoria
Moreno, Maria
Ariza, Julia
Lozano, Eva
Arjona-Gutierrez, Jacinto

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Elsevier
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Abstract

To investigate how the modulation of the oxidative balance affects cytotoxic therapies in glioblastoma, in vitro. Human glioblastoma U251 and T98 cells and normal astrocytes C8D1A were loaded with coenzyme Q10 (CoQ). Mitochondrial superoxide ion (O2-) and H2O2 were measured by fluorescence microscopy. OXPHOS performance was assessed in U251 cells with an oxytherm Clark-type electrode. Radio- and chemotherapy cytotoxicity was assessed by immunostaining of γH2AX (24 h), annexin V and nuclei morphology, at short (72 h) and long (15 d) time. Hif-1α, SOD1, SOD2 and NQO1 were determined by immunolabeling. Catalase activity was measured by classic enzymatic assay. Glutathione levels and total antioxidant capacity were quantified using commercial kits. CoQ did not affect oxygen consumption but reduced the level of O2- and H2O2 while shifted to a pro-oxidant cell status mainly due to a decrease in catalase activity and SOD2 level. Hif-1α was dampened, echoed by a decrease lactate and several key metabolites involved in glutathione synthesis. CoQ-treated cells were twofold more sensitive than control to radiation-induced DNA damage and apoptosis in short and long-term clonogenic assays, potentiating TMZ-induced cytotoxicity, without affecting non-transformed astrocytes. CoQ acts as sensitizer for cytotoxic therapies, disarming GBM cells, but not normal astrocytes, against further pro-oxidant injuries, being potentially useful in clinical practice for this fatal pathology.

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Especies reactivas de oxígeno

MeSH Terms

Antioxidants
Apoptosis
Brain neoplasms
DNA damage
Dacarbazine
Glioblastoma
Humans
Hydrogen peroxide
Mitochondria
Oxidative stress
Oxygen consumption
Radiation tolerance
Reactive oxygen species
Temozolomide
Tumor cells, cultured
Ubiquinone

DeCS Terms

Antioxidantes
Consumo de oxígeno
Células tumorales cultivadas
Daño del ADN
Estrés oxidativo
Mitocondrias

CIE Terms

Keywords

Antioxidant capacity, Apoptosis, Glycolytic metabolism, Ionizing radiation, Reactive oxygen species, Ubiquinone

Citation

Frontiñán-Rubio J, Santiago-Mora RM, Nieva-Velasco CM, Ferrín G, Martínez-González A, Gómez MV, et al. Regulation of the oxidative balance with coenzyme Q10 sensitizes human glioblastoma cells to radiation and temozolomide. Radiother Oncol. 2018 Aug;128(2):236-244