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Radioprotection by DMSO in nitrogen-saturated mammalian cells exposed to helium ion beams
The contribution of OH radical-mediated indirect action by particle beams under hypoxic irradiation condition was investigated by using a radical scavenger. V79 cells were irradiated with 150 MeV/nucleon helium ions at an LET of 2.2 keV/μm in the presence or absence of DMSO, and their colony surviva...
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Published in: | Radiation physics and chemistry (Oxford, England : 1993) England : 1993), 2009-12, Vol.78 (12), p.1175-1178 |
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container_end_page | 1178 |
container_issue | 12 |
container_start_page | 1175 |
container_title | Radiation physics and chemistry (Oxford, England : 1993) |
container_volume | 78 |
creator | Hirayama, Ryoichi Matsumoto, Yoshitaka Kase, Yuki Noguchi, Miho Ando, Koichi Ito, Atsushi Okayasu, Ryuichi Furusawa, Yoshiya |
description | The contribution of OH radical-mediated indirect action by particle beams under hypoxic irradiation condition was investigated by using a radical scavenger. V79 cells were irradiated with 150
MeV/nucleon helium ions at an LET of 2.2
keV/μm in the presence or absence of DMSO, and their colony survivals were determined. The contribution of indirect action to cell killing under hypoxic condition was estimated to be 52±9%. We conclude that OH radical-mediated indirect action still has a half in total contribution on cell killing under hypoxic condition. |
doi_str_mv | 10.1016/j.radphyschem.2009.07.006 |
format | article |
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MeV/nucleon helium ions at an LET of 2.2
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subjects | Cell killing Helium ion beam HIMAC Hypoxia Indirect action |
title | Radioprotection by DMSO in nitrogen-saturated mammalian cells exposed to helium ion beams |
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