Updated on 2024/04/18

写真a

 
Shiraishi Kazunori
 
Organization
Graduate School of Science Department of Biological Chemistry Assistant Professor
School of Science Department of Biological Chemistry
Title
Assistant Professor
Affiliation
Institute of Science

Position

  • Graduate School of Science Department of Biological Chemistry 

    Assistant Professor  2022.04 - Now

  • School of Science Department of Biological Chemistry 

    Assistant Professor  2022.04 - Now

Degree

  • 博士(医学) ( Others )

Research Areas

  • Environmental Science/Agriculture Science / Chemical substance influence on environment  / Radiation biology

  • Environmental Science/Agriculture Science / Radiation influence  / Radiation biology

Research Interests

  • 放射線

Research subject summary

  • 神経発生過程におけるDNA修復酵素の役割

  • 神経幹細胞をモデルとした幹細胞の放射線影響の研究

Professional Memberships

  • 日本癌学会

    2004.04 - Now   Domestic

  • 日本放射線影響学会

    1997.04 - Now   Domestic

  • 日本放射線影響学会

Papers

  • Enhanced induction of abnormal telomere FISH signals in response to oxidative DNA damage

    Sakamoto Y.

    Journal of Radiation Research   65 ( 2 )   187 - 193   2024.03( ISSN:04493060

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  • Repair kinetics of DNA double-strand breaks and incidence of apoptosis in mouse neural stem/progenitor cells and their differentiated neurons exposed to ionizing radiation Reviewed

    Kashiwagi H, Shiraishi K, Sakaguchi K, Nakahama T, Kodama S.

    J. Radiat. Res. 著書   59   2018

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    Kind of work:Joint Work  

  • High susceptibility of mouse newborns to delayed appearance of DNA double-strand breaks in neural stem/progenitor cells exposed to ionizing radiation. Reviewed

    Sakaguchi K, Shiraishi K, Kodama S.

    J. Radiat. Res. 雑誌   2018

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    Kind of work:Joint Work  

  • A cyclized helix-loop-helix peptide as a molecular scaffold for the design of inhibitors of intracellular protein-protein interactions by epitope and arginine grafting Reviewed

    Fujiwara, D., Kitada, H., Oguri, M., Nishihara, T., Michigami, M., Shiriashi, K., Yuba, E., Nakase, I., Im, H., Cho, S., Joung, J. Y., Kodama, S., Kono, K., Ham, S., and Fujii, I.

    Angew Chem. Int. Ed. Engl. 雑誌   55 ( 36 )   2016

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    Kind of work:Joint Work  

  • Growth retardation of paramecium and mouse Cells by shielding them from background radiation. Reviewed

    Kawanishi M, Okuyama K, Shiraishi K, Matsuda Y, Taniguchi R, Shiomi N, Yonezawa M, Yagi T.

    Radiation Reseach 雑誌   2012

  • Early response of neural stem/progenitor cells after X-ray irradiation in vitro Reviewed

    Kato, T., Kanemura, Y., Shiraishi, K., Miyake, J., Kodama, S., Hara, M.

    Neuroreport 雑誌   18   895 - 900   2007.04

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    Kind of work:Joint Work  

  • Telomere biology: Implications for radiation carcinogensis Reviewed

    Kodama, S., Ariyoshi, K., Watanabe, S., Shiraishi, K., Watanabe, M.

    Elsevier Science B.V.   2007

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    Kind of work:Joint Work  

  • 3. Increaesd chromosome instability and accumulation of DNA double-strand breaks in Werner syndrome cells

    Ariyoshi, K., Shiraishi, K., Suzuki, K., Goto, M., Watanabe, M. Kodama, S.

    13th International Congress of Radiation Reseach 著書   2007

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Books and Other Publications

  • Telomere biology: Implications for radiation carcinogenesis

    Kodama,S., Ariyoshi, K., Watanabe, S., Shiraishi, K., and Watanabe M.(著者),5人(著者数),2人(うち本学教員数),Y. Shibata, H. Namba, K. Suzuki, a( Role: Joint author)

       2007.01 

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    Responsible for pages:242-247  

Presentations

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Outline of collaborative research (seeds)

  • 硬X線照射装置を用いた材料、機器開発

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    当研究室で管理するX線照射装置は80Kev程度の実効エネルギーを持つ。この装置を用いて、放射線耐性試験、画像判定試験とうをおこぬことができる。

  • マウス pun 遺伝子復帰突然変異を用いた変異原試験

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    マウス pun 遺伝子を用いた、様々な変異原に対して高感度な検出系を我々は構築している。さらに、 p53、p21 などの遺伝子欠損マウスと組み合わせることで、変異原試験系の充実を計る。

Grant-in-Aid for Scientific Research

  • 新規のDNAリガーゼⅣ遺伝子変異マウスにおける

    2021

Charge of on-campus class subject

  • Experiment in Biological Science II

    2021   Practical Training  

  • Biology of Environmental Stress Response

    2021    

  • Fundamental Experiments of Biology

    2021   Practical Training  

  • Radiation Biology

    2021