Literature DB >> 34519601

Effects of LET on oxygen-dependent and-independent generation of hydrogen peroxide in water irradiated by carbon-ion beams.

Ken-Ichiro Matsumoto1, Megumi Ueno1, Minako Nyui1, Yoshimi Shoji1,2, Ikuo Nakanishi2.   

Abstract

Linear energy transfer (LET) dependence of yields of O2-dependent and O2-independent hydrogen peroxide (H2O2) in water irradiated by ionizing radiation was investigated. The radiation-induced hydroxyl radical (•OH) generation in an aqueous solution was reported to occur in two different localization densities, the milli-molar (relatively sparse) and/or molar (markedly-dense) levels. In the milli-molar-level •OH generation atmosphere, •OH generated at a molecular distance of ∼7 nm are likely unable to interact. However, in the molar-level •OH generation atmosphere, several •OH were generated with a molecular distance of 1 nm or less, and two •OH can react to directly make H2O2. An aliquot of ultra-pure water was irradiated by 290-MeV/nucleon carbon-ion beams at the Heavy-Ion Medical Accelerator in Chiba (HIMAC, NIRS/QST, Chiba, Japan). Irradiation experiments were performed under aerobic or hypoxic (<0.5% oxygen) conditions, and several LET conditions (13, 20, 40, 60, 80, or >100 keV/μm). H2O2 generation in irradiated samples was estimated by three methods. The amount of H2O2 generated per dose was estimated and compared. O2-independent H2O2 generation, i.e. H2O2 generation under hypoxic conditions, increased with increasing LET. On the other hand, the O2-dependent H2O2 generation, i.e. subtraction of H2O2 generation under hypoxic conditions from H2O2 generation under aerobic conditions, decreased with increasing LET. This suggests that the markedly-dense •OH generation is positively correlated with LET. High-LET beams generate H2O2 in an oxygen-independent manner.

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Keywords:  Oxygen-independent hydrogen peroxide generation; carbon-ion beam; high linear energy transfer beam; hydroxyl radical; hypoxia; ionizing radiation; oxygen effect

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Year:  2021        PMID: 34519601     DOI: 10.1080/10715762.2021.1915489

Source DB:  PubMed          Journal:  Free Radic Res        ISSN: 1029-2470


  1 in total

1.  Estimation of the Local Concentration of the Markedly Dense Hydroxyl Radical Generation Induced by X-rays in Water.

Authors:  Ken-Ichiro Matsumoto; Megumi Ueno; Yoshimi Shoji; Ikuo Nakanishi
Journal:  Molecules       Date:  2022-01-18       Impact factor: 4.411

  1 in total

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