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Free Radical Generations and Reactions in an Aqueous Sample Irradiated by X-ray or 290 MeV Carbon-Ion Beam

https://repo.qst.go.jp/records/78937
https://repo.qst.go.jp/records/78937
053ec073-bb83-4398-a085-550c6b92f91b
Item type 会議発表用資料 / Presentation(1)
公開日 2020-01-06
タイトル
タイトル Free Radical Generations and Reactions in an Aqueous Sample Irradiated by X-ray or 290 MeV Carbon-Ion Beam
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_c94f
資源タイプ conference object
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 Ken-ichiro, Matsumoto

× Ken-ichiro, Matsumoto

WEKO 841059

Ken-ichiro, Matsumoto

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Ueno, Megumi

× Ueno, Megumi

WEKO 841060

Ueno, Megumi

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Nyui, Minako

× Nyui, Minako

WEKO 841061

Nyui, Minako

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Shoji, Yoshimi

× Shoji, Yoshimi

WEKO 841062

Shoji, Yoshimi

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Nakanishi, Ikuo

× Nakanishi, Ikuo

WEKO 841063

Nakanishi, Ikuo

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Matsumoto, Kenichiro

× Matsumoto, Kenichiro

WEKO 841064

en Matsumoto, Kenichiro

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Ueno, Megumi

× Ueno, Megumi

WEKO 841065

en Ueno, Megumi

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Nyui, Minako

× Nyui, Minako

WEKO 841066

en Nyui, Minako

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Shoji, Yoshimi

× Shoji, Yoshimi

WEKO 841067

en Shoji, Yoshimi

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Nakanishi, Ikuo

× Nakanishi, Ikuo

WEKO 841068

en Nakanishi, Ikuo

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抄録
内容記述タイプ Abstract
内容記述 Radiation-induced generations of reactive oxygen species (ROS) were quantified and then possibilities of the sequential reactions were discussed based on its initial localized density at the generated site.
Two different localized densities of hydroxyl radical (•OH) generations were determined, the relatively sparse (milli-molar level) and extremely dense (molar level) generations. The intermolecular distances of the sparse •OH was estimated as 4.3‒6.6 nm, and that of the extremely dense •OH was 1 nm or shorter. In the dense •OH cluster two •OH molecules are able to react and generate hydrogen peroxide (H2O2), and then one more •OH can react with H2O2 to generate hydroperoxy radical (HO2•). If the •OH source was abundant enough, two HO2• may react to generate H2O2 again. Therefore, in the dense •OH clusters the H2O2 could be generated independent of oxygen. Total •OH generation was identical with the same dose of X-ray and carbon-ion beam irradiation. The percentage of the dense •OH generation, however; increased with increasing linear energy transfer (LET).
Low LET radiations, such as X-ray or gamma-ray, make sparse •OH mainly. The sparse •OH, i.e. •OH generated milli-molar level, may not be a major biological attacker. Hydrogen radical (•H), which is generated simultaneously with the •OH through water radiolysis is the important factor. The •H and oxygen react and generates hydroperoxyl radical (HO2•). Therefore, low LET radiations generate H2O2 dependent of oxygen, and then the oxygen effect is more problematic on low LET radiations
There are two ways to generate H2O2 in water irradiated by ionizing radiation. Those are oxygen-dependent and oxygen-independent ways. The amount of oxygen-dependent H2O2 generation decreased while LET increased. In contrast, the oxygen-independent H2O2 generation increased while LET increased. The oxygen, however, could not affect the total amount of •OH generation or the total amount of ionization caused in water irradiated by ionizing radiation.
The possibility of the reaction between a hydroxyl radical and another molecule may be dependent on the molecular distance between them. The differences in ROS generation and distribution could make a difference in the quality of radiation therapy.
会議概要(会議名, 開催地, 会期, 主催者等)
内容記述タイプ Other
内容記述 Oxygen Radicals, Gordon Research Conference
発表年月日
日付 2020-02-05
日付タイプ Issued
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