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Flow cytometric assessment of DNA double-strand break and repair kinetics in prediction of intrinsic radiosensitivity

Authors :
Mohammad-Taghi Bahreyni-Toossi
Mahdieh Dayyani
Mahmoud Mahmoudi
Hosein Azimian
Source :
Iranian Journal of Basic Medical Sciences, Vol 25, Iss 9, Pp 1104-1109 (2022)
Publication Year :
2022
Publisher :
Mashhad University of Medical Sciences, 2022.

Abstract

Objective(s): To enhance the efficiency of radiotherapy (RT), implementation of individual-based treatment is essential. In this way, determining individual intrinsic radiosensitivity (IRS) can be useful to achieve minimal adverse effects of RT. The present study aimed to identify IRS of breast cancer (BC) patients through determination of radiation-induced DNA double-strand breaks (DSBs), repair kinetics, and acute normal tissue complications induced by RT.Materials and Methods: DSBs induction and its repair kinetics in 50 BC patients’ lymphocytes were analyzed by flow cytometric analysis of H2AX Ser-139 phosphorylation at 30 min, 3 and 24 hr after in vitro irradiation. In vivo skin dosimetry was done by GAFChromic films and acute skin toxicity was scored by radiation oncologists according to the criteria of Radiation Therapy and Oncology Group (RTOG) in all patients with similar prescribed treatment.Results: The average surface dose for patients ranged from 0.92 to 1.9 Gy and correlation analysis showed no significant relationship with weekly acute skin reactions. Formation of γH2AX after 30 min, slope of dose-response curve and repair kinetics of DSBs after 3 and 24 hr (intrinsic radiosensitivity) were significantly correlated with the RTOG scores following irradiation (clinical radiosensitivity) (r=0.48 and P-value

Details

Language :
English
ISSN :
20083866 and 20083874
Volume :
25
Issue :
9
Database :
Directory of Open Access Journals
Journal :
Iranian Journal of Basic Medical Sciences
Publication Type :
Academic Journal
Accession number :
edsdoj.8f1fe1f55c242c8b435c5665f734e10
Document Type :
article
Full Text :
https://doi.org/10.22038/ijbms.2022.65178.14350