Rchr
J-GLOBAL ID:200901002420343923   Update date: Feb. 01, 2024

Go Kagiya

カギヤ ゴウ | Go Kagiya
Affiliation and department:
Other affiliations (1):
Research field  (2): Radiology ,  Radiology
Research keywords  (5): Necrosis ,  Apoptosis ,  低酸素領域 ,  細胞死イメージング ,  がん幹細胞
Research theme for competitive and other funds  (9):
  • 2021 - 2024 Real-time visualization of radiation-induced intratumoral cell death and its application to radiation therapy
  • 2020 - 2023 Application of a gene expression visualization system to analyze cancer stem cell generation
  • 2018 - 2021 Real-time and non-invasive imaging of tumor cell death and its application to radiation treatment
  • 2017 - 2020 Modulation of radiation sensitivity of cancer cells through regulating the epithelial mesenchymal transition using microRNAs
  • 2015 - 2018 Construction of non-invasive real-time imaging system for cancer stem cell apoptosis and the application in chemoradiation therapy
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Papers (26):
  • Takaaki Hirano, Satoru Adachi, Naoya Ichimura, Akira Kasai, Masashi Kobayashi, Takashi Okuda, Ryohei Ogawa, Go Kagiya. Culturing Chinese hamster ovary cells on Cyclo Olefin Polymer triggers epithelial-mesenchymal transition and spheroid formation, which increases the foreign gene expression driven by the MMLV-LTR promoter. Biotechnology Progress. 2021
  • Go Kagiya, Ayaka Sato, Ryohei Ogawa, Masanori Hatashita, Mana Kato, Fumiaki Kojima, Fumitaka Kawakami, Yukari Nishimura, Naoya Abe, Fuminori Hyodo. Real-time visualization of intratumoral necrosis using split-luciferase reconstitution by protein trans-splicing. Molecular Therapy Oncolytics. 2021. 20. 48-58
  • Ryohei Ogawa, Go Kagiya, Akihiko Watanabe, Akihiro Morii, Zheng-Guo Cui, Takashi Kondo. A Simple Method for Constructing Artificial Promoters Activated in Response to Ultrasound Stimulation. Methods in molecular biology (Clifton, N.J.). 2017. 1651. 187-203
  • Go Kagiya, Ryohei Ogawa, Fuminori Hyodo, Kei Yamashita, Mizuki Nakamura, Ayumi Ishii, Yukihiko Sejimo, Shintaro Tominaga, Masaharu Murata, Yoshikazu Tanaka, et al. Development of a real-time imaging system for hypoxic cell apoptosis. Molecular therapy. Methods & clinical development. 2016. 5. 16009-16009
  • Go Kagiya, Ryohei Ogawa, Rajani Choudhuri, John A Cook, Masanori Hatashita, Yoshikazu Tanaka, Kana Koda, Kei Yamashita, Makoto Kubo, Fumitaka Kawakami, et al. Selective enhancement of hypoxic cell killing by tempol-regulated suicide gene expression. Oncology reports. 2015. 34. 2. 1065-73
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MISC (5):
Patents (1):
  • ネクローシスの検出キット及びその使用
Books (1):
  • 放射線医科学 -生体と放射線・電磁波・超音波-
    2016
Lectures and oral presentations  (40):
  • 高線量X線照射による腫瘍内アポトーシスの誘発メカニズム
    (第59回日本放射線腫瘍学会生物部会学術大会 2022)
  • 9-アミノアントラセン誘導体の蛍光特性を利用した合成とがん細胞イメージングへの応用
    (日本化学会第102春期年会 2022)
  • X線により誘発される腫瘍内低酸素細胞アポトーシスの可視化
    (第58回日本放射線腫瘍学会生物部会学術大会 2021)
  • 10-アリール置換9-アミノアントラセンの合成とがん細胞イメージングへの応用
    (日本化学会第101春季年会 2021)
  • Development of a non-invasive real time imaging system for hypoxic cell apoptosis.
    (16th International Congress of Radiation Research 2019)
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Education (4):
  • 2001 - 2005 University of Toyama Graduate School of Medicine
  • 1999 - 2001 Fukui Prefectural University
  • 1998 - 1999 University of Tsukuba Master's Program in Biosystem Studies
  • 1994 - 1998 Fukui Prefectural University Faculty of Biotechnology Department of Marine Bioscience
Professional career (2):
  • 博士(医学) (富山大学大学院)
  • 修士 (福井県立大学大学院)
Work history (6):
  • 2022/12 - 現在 Kitasato University School of Allied Health Sciences
  • 2016/04 - 2022/11 Kitasato University School of Allied Health Sciences
  • 2010/04 - 2016/03 Kitasato University School of Allied Health Sciences
  • 2008/04 - 2010/03 Kitasato University School of Allied Health Sciences
  • 2006/07 - 2008/03 米国国立衛生研究所 (NIH), 国立がん研究所(NCI) 放射線生物学部門(RBB) 客員研究員
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Association Membership(s) (3):
日本分子生物学会 ,  日本放射線腫瘍学会生物部会 ,  日本放射線影響学会
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