Rchr
J-GLOBAL ID:200901007575791886   Update date: Nov. 19, 2024

Maruyama Atsushi

マルヤマ アツシ | Maruyama Atsushi
Affiliation and department:
Job title: Professor
Research field  (4): Polymer chemistry ,  Molecular biochemistry ,  Biomaterials ,  Biomedical engineering
Research keywords  (7): DDS ,  bioconjugate ,  biofunctional materials ,  genotyping ,  DNA ,  Cationic copolymer ,  バイオコンジュゲート 核酸工学 生体機能性材料
Research theme for competitive and other funds  (42):
  • 2021 - 2024 Generation of novel bimolecular functions with artificial chaperone engineering
  • 2015 - 2020 Polymer nano assembly for innovative functional controls of biomolecules
  • 2016 - 2019 Design of photo-responsive ureido polymers
  • 2015 - 2018 Single molecule level analysis of dynamics of super-coild DNA
  • 2013 - 2016 Design of polypeptide showing UCST-type phase transition behavior
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Papers (274):
  • Shouhei Nomura, Ayano Miyasaka, Atsushi Maruyama, Naohiko Shimada. Spontaneous Liquid Droplet-to-Gel Transition of Citrulline Polypeptide Complexed with Nucleic Acids. ACS Biomaterials Science & Engineering. 2024
  • Seiya Takemura, Naohiko Shimada, Atsushi Maruyama. Malachite green-derivatized cationic comb-type copolymer acts as a photoresponsive artificial chaperone. Journal of Biomaterials Science, Polymer Edition. 2023. 1-20
  • Wancheng Zhang, Shutaro Takahashi, Naohiko Shimada, Atsushi Maruyama. 2D-3D-Convertible, pH-Responsive Lipid Nanosheets. Small. 2023
  • Jun Wang, Hayashi Raito, Naohiko Shimada, Atsushi Maruyama. A Cationic Copolymer Enhances Responsiveness and Robustness of DNA Circuits. Small. 2023
  • Shuya Fan, Tadao Takada, Atsushi Maruyama, Mamoru Fujitsuka, Kiyohiko Kawai. Programmed Control of Fluorescence Blinking Patterns based on Electron Transfer in DNA. Chemistry - A European Journal. 2023. 29. 19
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MISC (262):
Books (20):
  • Electrostatic interaction
    Supramolecular design for biological applications 2002
  • Electrostatic interaction
    Supramolecular design for biological applications 2002
  • Synthesis and chemical characterization of polylysine comb-type copolymers as site-specific DNA carriers,in"Non-viral vectors for gene theraph"
    Methods in Molecular Medicine,Humana Press Inc. 2001
  • Site-specific gene transfer with polylysine comb-type copolymers,in"Non-viral vectors for gene theraph"
    Methods in Molecular Medicine,Humana Press Inc. 2001
  • Duplex and Triplex stabilization by comb-type copolymers,in "Non-viral vectors for gene therapy"
    Methods in Molecular Medicine,Humana Press Inc. 2001
more...
Education (4):
  • - 1986 Tokyo University of Science Graduate School, Division of Engineering
  • - 1986 Tokyo University of Science Graduate School of Engineering
  • - 1982 Tokyo University of Science Faculty of Engineering
  • - 1982 Tokyo University of Science Faculty of Engineering Industrial Chemistry
Professional career (1):
  • 博士(工学)
Work history (5):
  • 2013/04 - 現在 Tokyo Institute of Technology School of Life Science and Technology Professor
  • 2003 - Kyushu University Institute for Materials Chemistry and Engineering Professor
  • 2000 - Tokyo Institute of Technology
  • 1991 - Tokyo Institute of Technology
  • 1987 - Sophia University
Committee career (4):
  • 日本核酸医薬学会 評議委員
  • 日本核酸化学会 評議委員
  • 日本DDS学会 評議委員
  • 日本バイオマテリアル学会 評議委員
Awards (8):
  • 2020/08 - 日本DDS学会 永井賞
  • 2018/09 - 日本油化学会 オレオサイエンス賞
  • 2018/05 - Society of Polymer Science, Japan The Award of the Society of Polymer Science, Japan
  • 2005 - 日本バイオマテリアル学会 学会賞(学術)
  • 1998 - Intelligent Materials Forum, Takagi Award '98 for outstanding paper
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Association Membership(s) (6):
日本DDS学会 ,  日本バイオマテリアル学会 ,  日本化学会 ,  高分子学会 ,  NUCLEIC ACIDS THERAPEUTICS SOCIETY OF JAPAN ,  日本核酸化学会
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