Rchr
J-GLOBAL ID:201401098767730401   Update date: Jul. 17, 2024

Park Soyoung

パク ソヤン | Park Soyoung
Affiliation and department:
Other affiliations (1):
  • Osaka University  WPI Immunology Frontier Research Center   Specially-Appointed Associate Professor
Research field  (1): Bioorganic chemistry
Research theme for competitive and other funds  (2):
  • 2018 - 2021 Development of G4DNA-based switchable metalloenzymes
  • 2016 - 2018 Development of DNA Metalloenzymes Using a Rational Design Approach
Papers (50):
  • Yusuke Kawamoto, You Wu, Soyoung Park, Kumi Hidaka, Hiroshi Sugiyama, Yuki Takahashi, Yoshinobu Takakura. Multivalent dendritic DNA aptamer molecules for the enhancement of therapeutic effect. Chemical Communications. 2024
  • Yusuke Kawamoto, Wen Liu, Ji Hye Yum, Soyoung Park, Hiroshi Sugiyama, Yuki Takahashi, Yoshinobu Takakura. Enhanced Immunostimulatory Activity of Covalent DNA Dendrons. ChemBioChem. 2021. 23. 4
  • Takuya Hidaka, Wen Ann Wee, Ji Hye Yum, Hiroshi Sugiyama, Soyoung Park. Photo-Controllable Phase Transition of Arylazopyrazole-Conjugated Oligonucleotides. Bioconjugate Chemistry. 2021. 32. 10. 2129-2133
  • Daisuke Hori, Ji Hye Yum, Hiroshi Sugiyama, Soyoung Park. Tropylium derivatives as new entrants that sense quadruplex structures. Bulletin of the Chemical Society of Japan. 2021. 94. 7. 1948-1953
  • Wen Ann Wee, Ji Hye Yum, Shingo Hirashima, Hiroshi Sugiyama, Soyoung Park. Synthesis and application of a 19F-labeled fluorescent nucleoside as a dual-mode probe for i-motif DNAs. RSC Chemical Biology. 2021. 2. 3. 876-882
more...
MISC (6):
Lectures and oral presentations  (6):
  • Development of DNA Hybrid Catalyst Using a Rational Design Approach and Application in the Asymmetric Synthesis
    (Invited Lecture 2014)
  • DNA-based Hybrid Catalysts Using the Covalent Anchoring Strategy: Structural Understanding of DNA-based Asymmetric Catalysis
    (Winter Workshop of Chemistry division at the Korean Chemical Society 2014)
  • DNA-based Hybrid Catalysts Using the Covalent Anchoring Strategy: Structural Understanding of DNA-based Asymmetric Catalysis
    (KYOTO-KAIST-NTHU Junior Chemist Symposium, Korea Advanced Institute of Science and Technology 2014)
  • Deciphering DNA-Based Asymmetric Catalysis through Intramolecular Friedel-Crafts Alkylations
    (Invited Lecture 2013)
  • Deciphering DNA-Based Asymmetric Catalysis through Intramolecular Friedel-Crafts Alkylations
    (Invited Lecture 2012)
more...
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