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Induction of adaptive response (Yonezawa Effect) by combination of irradiations with different LET values in mice.

https://repo.qst.go.jp/records/71097
https://repo.qst.go.jp/records/71097
7c8e420c-048c-4b7c-84a9-91ac4d0ab9ad
Item type 会議発表用資料 / Presentation(1)
公開日 2013-05-17
タイトル
タイトル Induction of adaptive response (Yonezawa Effect) by combination of irradiations with different LET values in mice.
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 Tanaka, Kaoru

× Tanaka, Kaoru

WEKO 698806

Tanaka, Kaoru

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Bing, Wang

× Bing, Wang

WEKO 698807

Bing, Wang

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Ninomiya, Yasuharu

× Ninomiya, Yasuharu

WEKO 698808

Ninomiya, Yasuharu

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Maruyama, Kouichi

× Maruyama, Kouichi

WEKO 698809

Maruyama, Kouichi

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Vares, Guillaume

× Vares, Guillaume

WEKO 698810

Vares, Guillaume

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Morimoto, Yasuko

× Morimoto, Yasuko

WEKO 698811

Morimoto, Yasuko

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Fujita, Kazuko

× Fujita, Kazuko

WEKO 698812

Fujita, Kazuko

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Eguchi-Kasai, Kiyomi

× Eguchi-Kasai, Kiyomi

WEKO 698813

Eguchi-Kasai, Kiyomi

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Nenoi, Mitsuru

× Nenoi, Mitsuru

WEKO 698814

Nenoi, Mitsuru

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田中 薫

× 田中 薫

WEKO 698815

en 田中 薫

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王 冰

× 王 冰

WEKO 698816

en 王 冰

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二宮 康晴

× 二宮 康晴

WEKO 698817

en 二宮 康晴

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丸山 耕一

× 丸山 耕一

WEKO 698818

en 丸山 耕一

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Guillaume Vares

× Guillaume Vares

WEKO 698819

en Guillaume Vares

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森本 泰子

× 森本 泰子

WEKO 698820

en 森本 泰子

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藤田 和子

× 藤田 和子

WEKO 698821

en 藤田 和子

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笠井 清美

× 笠井 清美

WEKO 698822

en 笠井 清美

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根井 充

× 根井 充

WEKO 698823

en 根井 充

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抄録
内容記述タイプ Abstract
内容記述 Induction of adaptive response (AR) by combination of irradiations with different LET values was attempted in a series of investigations in young adult female mice of C57BL/6J strain using mainly thirty-day survival in vivo as the endpoint. For mouse total body irradiations, X-rays and high LET accelerated heavy ion irradiations were used. The heavy ion irradiations were from carbon, silicon, neon and iron beams. Existence of AR was demonstrated by delivering a priming low dose of X-rays (0.50 Gy) in combination with a challenge high dose of accelerated carbon, neon or silicon ion particles but not iron particle. AR was characterized by significantly decreased mortality in the 30-day survival test. On the other hand, when the priming dose was from heavy ion irradiations and the challenging dose was from X-rays, only the combination of carbon ion plus X-rays could induce AR. For the combination of irradiation from heavy ions, only two cases, namely, carbon ions plus carbon ions and carbon ions plus neon ions could induce AR. Results obtained so far showed that induction of AR by X-rays against high LET heavy ion irradiations is an event depending on the LET or/and species of the ions, it is hardly to induce AR by high LET heavy ion irradiations against X-rays, and it seems that high LET heavy ion irradiations hardly induce any AR against higher LET heavy ion irradiations. As this mouse AR model ( Yonezawa Effect ) was originally established by using X-rays as both the priming and challenge irradiations, and the mechanism underlying AR induced by X-rays as both the priming and the challenging doses was due to radioresistance occurring in hematopoietic tissues, to explore the mechanism involved in the AR induced by X-rays against heavy ion irradiations, we further investigated residual damage in the hematopoietic system in surviving animals. Results showed that the priming low dose of X-rays could relieve the detrimental effects on the hematopoietic system. We observed both an improvement in the blood platelet count and the ratio of polychromatic erythrocytes (PCEs) to the sum of PCEs and normochromatic erythrocytes (NCEs) and a marked reduction of the incidences of micronucleated PCEs and micronucleated NCEs. These findings suggest that the priming low-dose of low LET X-rays induced a protective effect on the hematopoietic system, which may play an important role in both rescue from acute lethal damage (mouse killing) and prevention of late detrimental consequences (residual anhematopoiesis and delayed genotoxic effects) caused by exposure to a high challenge dose from low-LET (X-ray) or high-LET (carbon and neon ion) irradiations. These findings bring new knowledge to the characterization of the Yonezawa Effect by providing new insight into the mechanistic study of AR in vivo.
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 The 3rd Asian congress of radiation research.
発表年月日
日付 2013-05-13
日付タイプ Issued
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