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Total-body low dose irradiation of mice induces neither learning disability and memory impairment in Morris water maze test nor Alzheimer s disease-like pathogensis in the brain.

https://repo.qst.go.jp/records/54596
https://repo.qst.go.jp/records/54596
68dd891d-2946-46b3-bfc5-780c9a1fe90f
Item type 会議発表論文 / Conference Paper(1)
公開日 2014-06-17
タイトル
タイトル Total-body low dose irradiation of mice induces neither learning disability and memory impairment in Morris water maze test nor Alzheimer s disease-like pathogensis in the brain.
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_5794
資源タイプ conference paper
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 Bing, Wang

× Bing, Wang

WEKO 834345

Bing, Wang

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Tanaka, Kaoru

× Tanaka, Kaoru

WEKO 834346

Tanaka, Kaoru

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Ji, Bin

× Ji, Bin

WEKO 834347

Ji, Bin

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Ono, Maiko

× Ono, Maiko

WEKO 834348

Ono, Maiko

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Hou, Yagun

× Hou, Yagun

WEKO 834349

Hou, Yagun

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Ninomiya, Yasuharu

× Ninomiya, Yasuharu

WEKO 834350

Ninomiya, Yasuharu

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Maruyama, Kouichi

× Maruyama, Kouichi

WEKO 834351

Maruyama, Kouichi

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Nakajima, Nakako

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WEKO 834352

Nakajima, Nakako

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Begum, Nasrin

× Begum, Nasrin

WEKO 834353

Begum, Nasrin

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Higuchi, Makoto

× Higuchi, Makoto

WEKO 834354

Higuchi, Makoto

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Fujimori, Akira

× Fujimori, Akira

WEKO 834355

Fujimori, Akira

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Yoshihiko, Uehara

× Yoshihiko, Uehara

WEKO 834356

Yoshihiko, Uehara

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Nakajima, Tetsuo

× Nakajima, Tetsuo

WEKO 834357

Nakajima, Tetsuo

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Suhara, Tetsuya

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WEKO 834358

Suhara, Tetsuya

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Ono, Tetsuya

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WEKO 834359

Ono, Tetsuya

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Nenoi, Mitsuru

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WEKO 834360

Nenoi, Mitsuru

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Wang, Bing

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WEKO 834361

en Wang, Bing

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Tanaka, Kaoru

× Tanaka, Kaoru

WEKO 834362

en Tanaka, Kaoru

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Ji, Bin

× Ji, Bin

WEKO 834363

en Ji, Bin

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Ono, Maiko

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WEKO 834364

en Ono, Maiko

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Fang, YaQun

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WEKO 834365

en Fang, YaQun

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Ninomiya, Yasuharu

× Ninomiya, Yasuharu

WEKO 834366

en Ninomiya, Yasuharu

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Maruyama, Kouichi

× Maruyama, Kouichi

WEKO 834367

en Maruyama, Kouichi

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Nakajima, Nakako

× Nakajima, Nakako

WEKO 834368

en Nakajima, Nakako

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Begum, Nasrin

× Begum, Nasrin

WEKO 834369

en Begum, Nasrin

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Higuchi, Makoto

× Higuchi, Makoto

WEKO 834370

en Higuchi, Makoto

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Fujimori, Akira

× Fujimori, Akira

WEKO 834371

en Fujimori, Akira

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Nakajima, Tetsuo

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WEKO 834372

en Nakajima, Tetsuo

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Suhara, Tetsuya

× Suhara, Tetsuya

WEKO 834373

en Suhara, Tetsuya

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Ono, Tetsuya

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WEKO 834374

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Nenoi, Mitsuru

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WEKO 834375

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抄録
内容記述タイプ Abstract
内容記述 urpose: Alzheimer's disease (AD) is the most common form of dementia, while its cause and progression are not well understood [ 1]. The possible cognitive and behavioral consequences induced by low-dose radiation are of great concern as humans are exposed to ionizing radiations from various sources including medical diagnosis [ 2]. A recent study in mice reported early transcriptional response in brain to low-dose X-rays (0.10 Gy) suggesting alterations of molecular networks and pathways associated with cognitive functions, advanced aging and AD. The present study is to investigate the late pathological, cognitive and behavioral consequences induced by low-dose radiation.
Materials and methods: C57BL/6J mice were total-body irradiated with an acute dose from X-rays (0.10 Gy) or carbon ions (0.05 or 0.10 Gy). The hippocampus was collected and the expression of 84 AD-related genes was analyzed. Morris water maze test was applied to the measurement of the learning ability and memory of the animals. Amyloid imaging with positron emission tomography were performed to detect the accumulation of fibrillary amyloid β peptide (Aβ), and characteristic pathologies of AD were examined with immunohistochemical staining of amyloid precursor protein (APP), Aβ, tau, and phosphorylated tau.
Results: For the transcriptional studies, results showed that a few genes out of 84 AD-related genes were significantly up-regulated at 4 h after irradiation and the other genes had no marked change; on the other hand, a few other genes showed a significant down-regulation, while the other genes had no marked change at 1 year after irradiation. For the behavioral studies, no significant difference on learning ability and memory was observed at 1 and 2 years after irradiation. Imaging and immunohistochemical staining showed no change in the accumulation of fibrillar amyloid and the expression of APP, Aβ, tau and phosphorylated tau were detectable in the animals 4 months and 2 years after irradiation.
Conclusion: These findings suggest that total-body irradiation at a dose of 0.10 Gy could hardly induce significant early or late transcriptional alterations in most of the AD-related genes in the hippocampus, learning disability and memory impairment, and AD-like pathological change in the brain in mice [ 3].
書誌情報 Journal of Radiation Research

号 55, p. i 20-i 21, 発行日 2014-03
ISSN
収録物識別子タイプ ISSN
収録物識別子 0449-3060
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