Title of article :
The Role of Target and Bystander Cells in Dose-Response Relationship of Radiation-Induced Bystander Effects in Two Cell Lines
Author/Authors :
Soleymanifard, Shokouhozaman Medical Physics Resaerch Center - School of Medicine - Mashhad University of Medical Sciences , Bahreyni Toossi, Mohammad Taghi Department of Medical Physics - School of Medicine - Mashhad University of Medical Sciences , Sazgarnia, Ameneh Medical Physics Resaerch Center - School of Medicine - Mashhad University of Medical Sciences , Mohebbi, Shokoufe Medical Physics Resaerch Center - School of Medicine - Mashhad University of Medical Sciences
Pages :
7
From page :
177
To page :
183
Abstract :
Objective(s): Radiation effect induced in nonirradiated cells which are adjacent or far from irradiated cells is termed radiation-induced bystander effect (RIBE). Published data on dose-response relationship of RIBE is controversial. In the present study the role of targeted and bystander cells in RIBE dose-response relationship of two cell lines have been investigated. Materials and Methods: Two cell lines (QU-DB and MRC5) which had previously exhibited different dose-response relationship were selected. In the previous study the two cell lines received medium from autologous irradiated cells and the results showed that the magnitude of damages induced in QU-DB cells was dependent on dose unlike MRC5 cells. In the present study, the same cells irradiated with 0.5, 2 and 4 Gy gamma rays and their conditioned media were transferred to nonautologous bystander cells; such that the bystander effects due to cross-interaction between them were studied. Micronucleus assay was performed to measure the magnitude of damages induced in bystander cells (RIBE level). Results: QU-DB cells exhibited a dose-dependent response. RIBE level in MRC5 cells which received medium from 0.5 and 2 Gy QU-DB irradiated cells was not statistically different, but surprisingly when they received medium from 4Gy irradiated QU-DB cells, RIBE was abrogated. Conclusion: Results pertaining to QU-DB and MRC5 cells indicated that both target and bystander cells determined the outcome. Triggering the bystander effect depended on the radiation dose and the target cell-type, but when RIBE was triggered, dose-response relationship was predominantly determined by the bystander cell type.
Keywords :
Dose-response relationship , Micronucleus assay , MRC5 , QU-DB , Radiation-induced bystander effect
Journal title :
Astroparticle Physics
Serial Year :
2013
Record number :
2423388
Link To Document :
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