Rchr
J-GLOBAL ID:200901092327385305   Update date: Nov. 20, 2024

Shiku Hitoshi

シク ヒトシ | Shiku Hitoshi
Affiliation and department:
Job title: Professor
Homepage URL  (2): https://www.che.tohoku.ac.jp/~est/index.htmlhttps://www.che.tohoku.ac.jp/~est/index_English.html
Research field  (4): Optical engineering and photonics ,  Biomaterials ,  Biomedical engineering ,  Basic physical chemistry
Research keywords  (1): Bioelectrochemistry
Research theme for competitive and other funds  (20):
  • 2021 - 2024 Reconstruction of tumor microenvironment and in-situ metabolic analysis
  • 2021 - 2024 Electrochemical imaging that contributes to cell lineage determination
  • 2018 - 2021 Monitoring system for dynamic change of bio-medical materials with scanning electrochemical microscopy
  • 2016 - 2018 Large-scale multi-analyte sensing system with bipolar electrode array
  • 2015 - 2018 electrochemical control of mas transfer and single cell analysis by multifunctional nanopipet
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Papers (307):
  • Kosuke Ino, Miyu Mashiko, Yusuke Kanno, Yeyi Tang, Shuzo Masui, Takasi Nisisako, Kaoru Hiramoto, Hiroya Abe, Hitoshi Shiku. Extended Spherical Diffusion Theory: Electrochemiluminescence Imaging Analysis of Diffusive Molecules from Spherical Biosamples. Analytical Chemistry. 2024
  • Chisato Ito, Kosuke Ino, Yoshinobu Utagawa, Kazuyuki Iwase, Yasuhiko Shinoda, Hiroya Abe, Hitoshi Shiku. Electrochemical permeability assays of hydrolyzed acetylsalicylic acid (aspirin) in engineered gut models. Chemistry Letters. 2024. 53. 9
  • Kosuke Ino, An Konno, Yoshinobu Utagawa, Taiyo Kanno, Kazuyuki Iwase, Hiroya Abe, Hitoshi Shiku. Fabrication of Two-Layer Microfluidic Devices with Porous Electrodes Using Printed Sacrificial Layers. Micromachines. 2024. 15. 8. 1054-1054
  • Yoshinobu Utagawa, Kosuke Ino, Yasuhiko Shinoda, Masateru Yamazaki, Hiroya Abe, Hitoshi Shiku. Enzyme-Free In-Situ Electrochemical Measurement Using a Porous Membrane Electrode for Glucose Transport into Cell Spheroids. ACS Sensors. 2024. 9. 8. 4248-4255
  • 梨本 裕司, 今野 杏, 西川 香里, 伊野 浩介, 堀 武志, 梶 弘和, 新宅 博文, 後藤 昌史, 珠玖 仁. 膵臓移植・膵島移植・人工膵臓の現状と展望 生体模倣システムによる膵島の血管形成能力と遺伝子発現の照合. 膵臓. 2024. 39. 3. A279-A279
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MISC (205):
  • 梨本裕司, 今野杏, 西川香里, 伊野浩介, 堀武志, 梶弘和, 新宅博文, 新宅博文, 後藤昌史, 珠玖仁. 生体模倣システムによる膵島の血管形成能力と遺伝子発現の照合. 膵臓(Web). 2024. 39. 3
  • An Konno, Kosuke Ino, Yoshinobu Utagawa, Hitoshi Shiku. Electrochemical imaging for cell analysis in microphysiological systems. Current Opinion in Electrochemistry. 2023. 39. 101270
  • 梨本裕司, 今野杏, 西川香里, 伊野浩介, 堀武志, 梶弘和, 新宅博文, 新宅博文, 後藤昌史, 珠玖仁. マイクロ流体デバイスを用いた単一膵島の血管形成能力の評価. 日本分析化学会年会講演要旨集(Web). 2023. 72nd
  • Hitoshi Shiku. Bipolar Electrode Systems for Biosensing. Review of Polarography. 2022. 68. 2. 87-95
  • Yoshinobu UTAGAWA, Kentaro ITO, Kumi Y. INOUE, Yuji NASHIMOTO, Kosuke INO, Hitoshi SHIKU. Electrochemical Substrates and Systems for Enzyme-Based Bioassays. BUNSEKI KAGAKU. 2022. 71. 3. 109-117
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Patents (4):
  • 検体セルおよび電気化学的分析装置及び電気化学的分析方法
  • 凸状領域を用いた分析方法
  • 哺乳動物胚の無侵襲的品質評価方法及びその装置
  • 電気化学的多検体分析方法
Books (13):
  • 基礎からわかる物理化学
    共立出版 2022 ISBN:9784320044999
  • 三次元培養における培養手法と周辺技術動向
    情報機構(東京) 2019 ISBN:9784865021684
  • Nanobiosensors and Nanobioanalyses
    Springer Japan 2015 ISBN:9784431551898
  • 電気化学ナノイメージング、in監修 民谷栄一,“ナノ融合による先進バイオデバイス”第4章3節PP.156-162
    2011
  • 酵素利用技術体系-基礎・解析から改変・高機能化・産業利用まで-, 走査型電気化学顕微鏡による酵素イメージング, p. 112-116(第2編、第2節)
    株式会社エヌ・ティー・エス 2010
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Education (1):
  • 1994 - 1997 Tohoku University Graduate School of Engineering Department of Applied Chemistry
Professional career (1):
  • Doctor of Engineering (Tohoku University)
Awards (9):
  • 2015/09/10 - (社)日本分析化学会 2015年度先端分析技術賞、JAIMA機器開発賞 電気化学計測に基づく受精卵および細胞塊の機能評価装置の開発
  • 2014/03/30 - (社)電気化学会 電気化学会論文賞 Electrochemical device with interdigitated ring array electrodes for investigating the relationship between cardiomyocyte differentiation from embryonic stem cells and alkaline phosphatase activity. Electrochemistry 81, 682-687 (2013).
  • 2013/12/16 - 日本分析化学会東北支部 東北分析化学賞 微小電極探針を用いる受精卵および細胞塊の機能探索に関する研究
  • 2011/03/25 - 電気化学会 Best Paper Award, The Elecgtrochemical Society of Japan Electrochemical characterization of enzyme and immunoglobulin G patterned using microcontact printing. Electrochemistry 78, 122-125 (2010).
  • 2010/12/19 - The International Congress of Pacific Basin Societies, Recent Advances in Bioanalysis: Ultra-Small Volumes, Global Metabolite Profiling and Single Cells (#56) Well-Received Oral Presentation Award
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Association Membership(s) (4):
日本分析学会 ,  表面技術協会 ,  日本化学会 ,  The Electrochemical Society of Japan
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