Rchr
J-GLOBAL ID:201601007471038057   Update date: Sep. 20, 2024

Hirano Masashi

ヒラノ マサシ | Hirano Masashi
Affiliation and department:
Homepage URL  (1): https://kaken.nii.ac.jp/d/r/20554471.ja.html
Research field  (2): Environmental effects of chemicals ,  Environmental impact assessment
Research keywords  (3): 細胞内受容体 ,  シトクロムP450 ,  化学物質
Research theme for competitive and other funds  (11):
  • 2023 - 2027 小型魚類胚動物代替生体毒性評価法によるAOPの構築と活用
  • 2023 - 2026 イオン性有機汚染物質の食物連鎖蓄積モデルの開発と生態リスク評価
  • 2023 - 2026 有機ハロゲン化合物の汽水産無脊椎動物に対する毒性リスク評価
  • 2020 - 2025 Elucidation of environmental contamination status and bioaccumulation features of emerging perfluoroalkyl substances (PFASs) and assessment of their ecotoxicological effects
  • 2021 - 2024 海産甲殻類を用いたフッ素系殺虫剤の汚染実態解明と環境リスク評価
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Papers (48):
  • Wakana Iwamoto, Tomohiro Ikeda, Hirotaka Nishikawa, Masashi Hirano, Hideki Kinoshita, Masateru Ono, Katsuhisa Kurogi, Yoichi Sakakibara, Masahito Suiko, Shin Yasuda. Regulatory Effects of Antioxidants on Indoxyl Sulfate-Enhanced Intracellular Oxidation and Impaired Phagocytic Activity in Differentiated U937 Human Macrophage Cells. Bioscience, biotechnology, and biochemistry. 2024
  • Kazuhiro Maeda, Masashi Hirano, Taka Hayashi, Midori Iida, Hiroyuki Kurata, Hiroshi Ishibashi. Elucidating Key Characteristics of PFAS Binding to Human Peroxisome Proliferator-Activated Receptor Alpha: An Explainable Machine Learning Approach. Environmental Science & Technology. 2023
  • Hoa Thanh Nguyen, Yuka Yoshinouchi, Masashi Hirano, Kei Nomiyama, Haruhiko Nakata, Eun-Young Kim, Hisato Iwata. In silico simulations and molecular descriptors to predict in vitro transactivation potencies of Baikal seal estrogen receptors by environmental contaminants. Ecotoxicology and Environmental Safety. 2023. 265. 115495-115495
  • Akira Kubota, Masashi Hirano, Yuka Yoshinouchi, Xing Chen, Michiko Nakamura, Yumi Wakayama, Jae Seung Lee, Haruhiko Nakata, Hisato Iwata, Yusuke K. Kawai. In vivo and in silico assessments of estrogenic potencies of bisphenol A and its analogs in zebrafish (Danio rerio): Validity of in silico approaches to predict in vivo effects. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology. 2023. 269. 109619-109619
  • Masaya Uchida, Hazuki Mizukawa, Masashi Hirano, Nobuaki Tominaga, Koji Arizono, Hiroshi Ishibashi. Adverse effects of contamination by fipronil and its derivatives on growth, molting, and gene expression in the mysid crustacean, Americamysis bahia, in Japanese estuaries. The Science of the total environment. 2023. 164595-164595
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MISC (67):
  • 落合真理, 栗原望, NGUYEN Hoa Thanh, 平野将司, 中田章史, 田島木綿子, 山田格, 岩田久人. Development of in vitro approaches for chemical hazard and risk assessment in cetaceans. 環境化学討論会要旨集(CD-ROM). 2023. 31st
  • 平川周作, 堀就英, 香月進, 宮脇崇, 平野将司, 岩田久人, 辻学. Characteristics of dioxins accumulated in Yusho patients and estimation of cytochrome P450-dependent metabolism by in silico docking simulation. 環境化学討論会要旨集(CD-ROM). 2022. 30th
  • 林太嘉, 平野将司, 石橋弘志. 次世代型有機フッ素化合物のペルオキシソーム増殖剤応答性受容体結合予測. Endocrine Disrupter News Letter (Web). 2022. 24. 4
  • 冨永伸明, 西山裕貴, 内田雅也, 石橋弘志, 平野将司, 有薗幸司. 有機フッ素化合物の生体毒性-メダカ胚発生に与える影響. Endocrine Disrupter News Letter (Web). 2022. 24. 4
  • 内田雅也, 石橋弘志, 平野将司, 水川葉月, 成松哲也, 冨永伸明, 有薗幸司. フェニルピラゾール系殺虫剤フィプロニルとその分解物の環境リスク評価. Endocrine Disrupter News Letter (Web). 2022. 24. 4
more...
Education (1):
  • 2006 - 2009 Prefectural University of Kumamoto
Work history (9):
  • 2024/04 - 現在 Tokai University School of Agriculture
  • 2022/04 - 2024/03 Tokai University School of Agriculture
  • 2021/04 - 2022/03 Tokai University School of Agriculture Department of Bioscience
  • 2018/04 - 2021/03 Kumamoto National College of Technology Department of Biological and Chemical Systems Engineering
  • 2016/04 - 2018/03 Kumamoto National College of Technology Department of Biological and Chemical Systems Engineering
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Awards (2):
  • 2012/07 - Pfizer Highly Cited Paper Award Acute toxicity of pharmaceutical and personal care products on freshwater crustacean (Thamnocephalus platyurus) and fish (Oryzias latipes)
  • 2011/07 - Paper Award
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