熊本キャンパス 八代キャンパス
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共通教育科 機械知能システム
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生物化学システム
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研究者情報(教員一覧)

学術論文

  1. Uchida M, Hirano M, Ishibashi H, Kobayashi J, Kagami Y, Koyanagi A, Kusano T, Koga M, Arizono K,
    "Transcriptional response of mysid crustacean, Americamysis bahia, is affected by subchronic exposure to nonylphenol",
    Ecotoxicol. Environ. Saf., In press,2016
  2. Iida M, Fujii S, Uchida M, Nakamura H, Kagami Y, Agusa T, Hirano M, Bak SM, Kim EY, Iwata H.,
    "Identification of aryl hydrocarbon receptor signaling pathways altered in TCDD-treated red seabream embryos by transcriptome analysis",
    Aquat Toxicol. 177, 156-70,2016
  3. Hwang JH, Park JY, Park HJ, Bak SM, Hirano M, Iwata H, Park YS, Kim EY.,
    "Ecological factors drive natural selection pressure of avian aryl hydrocarbon receptor 1 genotypes.",
    Sci Rep. 27526.,2016
  4. Kim IS, Hwang JH, Hirano M, Iwata H, Kim EY.,
    "In vitro and in silico evaluation of transactivation potencies of avian AHR1 and AHR2 by endogenous ligands: Implications for the physiological role of avian AHR2.",
    Comp Biochem Physiol C Toxicol Pharmacol., 7;187:1-9. ,2016
  5. Yoo J, Hirano M, Mizukawa H, Nomiyama K, Agusa T, Kim EY, Tanabe S, Iwata H.,
    "In Vitro and in Silico Analyses for Predicting Hepatic Cytochrome P450-Dependent Metabolic Potencies of Polychlorinated Biphenyls in the Baikal Seal",
    Environ. Sci. Technol., 49pp.14588~14596,2015
  6. Hirano M, Hwang JH, Park HJ, Bak SM, Iwata H, Kim EY.,
    "In silico analysis of the interaction of avian aryl hydrocarbon receptors and dioxins to decipher isoform‐, ligand‐, and species-specific activations.",
    Environ. Sci. Technol., 49pp.3795~3804,2015
  7. Iwata H, Yamaguchi K, Takeshita Y, Kubota A, Hirakawa S, Isobe T, Hirano M, Kim EY.,
    "Enzymatic characterization of in vitro-expressed Baikal seal cytochrome P450 (CYP) 1A1, 1A2, and 1B1: Implication of low metabolic potential of CYP1A2 uniquely evolved in aquatic mammals.",
    Aquat. Toxicol., 162pp.138~151,2015