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  1. Pubblicazioni

NRF2 orchestrates the redox regulation induced by radiation therapy, sustaining embryonal and alveolar rhabdomyosarcoma cells radioresistance

Articolo
Data di Pubblicazione:
2019
Abstract:
Purpose: Tumor cells generally exhibit higher levels of reactive oxygen species (ROS), however, when stressed, tumor cells can undergo a process of ‘Redox Resetting’ to acquire a new redox balance with stronger antioxidant systems that enable cancer cells to become resistant to radiation therapy (RT). Here, we describe how RT affects the oxidant/antioxidant balance in human embryonal (RD) and alveolar (RH30) rhabdomyosarcoma (RMS) cell lines, investigating on the molecular mechanisms involved. Methods: Radiations were delivered using an x-6 MV photon linear accelerator and their effects were assessed by vitality and clonogenic assays. The expression of specific antioxidant-enzymes, such as Superoxide Dismutases (SODs), Catalase (CAT) and Glutathione Peroxidases 4 (GPx4), miRNAs (miR-22, -126, -210, -375, -146a, -34a) and the transcription factor NRF2 was analyzed by quantitative polymerase chain reaction (q-PCR) and western blotting. RNA interference experiments were performed to evaluate the role of NRF2. Results: Doses of RT higher than 2 Gy significantly affected RMS clonogenic ability by increasing ROS production. RMS rapidly and efficiently brought back ROS levels by up-regulating the gene expression of antioxidant enzymes, miRNAs as well as of NRF2. Silencing of NRF2 restrained the RMS ability to counteract RT-induced ROS accumulation, antioxidant enzyme and miRNA expression and was able to increase the abundance of γ-H2AX, a biomarker of DNA damage, in RT-treated cells. Conclusions: Taken together, our data suggest the strategic role of oxidant/antioxidant balance in restraining the therapeutic efficiency of RT in RMS treatment and identify NRF2 as a new potential molecular target whose inhibition might represent a novel radiosensitizing therapeutic strategy for RMS clinical management.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Anti-oxidant; NRF2; Radioresistance; Radiotherapy; Reactive oxygen species; Rhabdomyosarcoma;
Elenco autori:
Marampon, F.; Codenotti, S.; Megiorni, F.; Del Fattore, A.; Camero, S.; Gravina, G. L.; Festuccia, C.; Musio, D.; De Felice, F.; Nardone, V.; Santoro, A. N.; Dominici, C.; Fanzani, A.; Pirtoli, L.; Fioravanti, A.; Tombolini, V.; Cheleschi, S.; Tini, P.
Autori di Ateneo:
Biochimica cellulare dei tumori dei tessuti molli
FANZANI ALESSANDRO
Link alla scheda completa:
https://iris.unibs.it/handle/11379/514769
Pubblicato in:
JOURNAL OF CANCER RESEARCH AND CLINICAL ONCOLOGY
Journal
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