Rchr
J-GLOBAL ID:201901001920642693   Update date: Nov. 10, 2024

NIFUJI AKIRA

NIFUJI AKIRA
Affiliation and department:
Research field  (1): Oral medicine
Research theme for competitive and other funds  (55):
  • 2021 - 2026 疾患解明アプローチによる筋・骨組織の機能回復を目指した腱組織再生の分子基盤解析
  • 2021 - 2025 レトロトランスポゾンLine1遺伝子群の骨格系分化過程における機能に関する研究
  • 2020 - 2023 骨に必須のマスター遺伝子を制御する核内分子G9aの増殖・分化調節メカニズム
  • 2020 - 2023 ウイルス感染ストレスを用いた新たな破骨細胞分化機構の解明
  • 2020 - 2023 腱・靭帯細胞の骨化制御の解明とアデノシン経路に着目した治療法開発
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Papers (89):
  • Satoshi Wada, Hisashi Ideno, Kazuhisa Nakashima, Koichiro Komatsu, Noboru Demura, Hiroshi Tomonari, Hiroshi Kimura, Makoto Tachibana, Akira Nifuji. The histone H3K9 methyltransferase G9a regulates tendon formation during development. Scientific reports. 2024. 14. 1. 20771-20771
  • Koichiro Komatsu, Hisashi Ideno, Kazuhisa Nakashima, Nobuyuki Udagawa, Yasuhiro Kobayashi, Hiroshi Kimura, Makoto Tachibana, Teruhito Yamashita, Akira Nifuji. The G9a histone methyltransferase represses osteoclastogenesis and bone resorption by regulating NFATc1 function. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 2024. 38. 13. e23779
  • Hisashi Ideno, Kazuhisa Nakashima, Koichiro Komatsu, Hiroshi Kimura, Yoichi Shinkai, Makoto Tachibana, Akira Nifuji. Epigenetic modifier G9a is involved in regulation of mouse tongue development. Journal of oral biosciences. 2024. 66. 1. 35-40
  • Zhu Ling, Hailati Aini, Shuhei Kajikawa, Jumpei Shirakawa, Kunikazu Tsuji, Yoshinori Asou, Hideyuki Koga, Ichiro Sekiya, Akira Nifuji, Masaki Noda, et al. Osteolytic Bone Loss and Skeletal Deformities in a Mouse Model for Early-Onset Paget's Disease of Bone with PFN1 Mutation Are Treatable by Alendronate. Pharmaceuticals (Basel, Switzerland). 2023. 16. 10
  • Hisashi Ideno, Koichiro Komatsu, Kazuhisa Nakashima, Akira Nifuji. Tooth transplantation and replantation: Biological insights towards therapeutic improvements. Genesis (New York, N.Y. : 2000). 2022. 60. 8-9. e23496
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MISC (179):
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