Rchr
J-GLOBAL ID:201901013641700924   Update date: Sep. 18, 2024

Mayuri Sakamoto

サカモト マユリ | Mayuri Sakamoto
Affiliation and department:
Research field  (1): Other
Research theme for competitive and other funds  (3):
  • 2022 - 2025 低出力超音波パルスの機械的刺激下における骨細胞を介した骨吸収誘導機構の解明
  • 2021 - 2024 矯正学的歯の移動時における低出力超音波パルスによる骨改造亢進機構の解析
  • 2020 - 2022 Examination of bone remodeling enhancement effect by LIPUS for promoting orthodontic tooth movement
Papers (4):
  • Tessei Nagayama, Tomohiro Fukunaga, Takehiro Yajima, Shohei Shigemi, Mayuri Sakamoto, Masahiro Seiryu, Hiroyuki Ichikawa, Itaru Mizoguchi, Tadasu Sato. Neural sodium voltage-gated channel beta subunit 3 and alpha subunit 7 distributions in mouse periodontal ligaments after experimental tooth movement. Clinical and Investigative Orthodontics. 2024. 83. 2. 70-79
  • Shohei Shigemi, Tadasu Sato, Mayuri Sakamoto, Takehiro Yajima, Takahiro Honda, Hiroka Tsumaki, Toru Deguchi, Hiroyuki Ichikawa, Tomohiro Fukunaga, Itaru Mizoguchi. The role of TRPV2 as a regulator on the osteoclast differentiation during orthodontic tooth movement in rats. Scientific Reports. 2023. 13. 1
  • Kiyo Sasaki, Nobuo Takeshita, Tomohiro Fukunaga, Masahiro Seiryu, Mayuri Sakamoto, Toshihito Oyanagi, Toshihiro Maeda, Teruko Takano-Yamamoto. Vibration accelerates orthodontic tooth movement by inducing osteoclastogenesis via transforming growth factor-β signalling in osteocytes. European Journal of Orthodontics. 2022. 44. 6. 698-704
  • Sakamoto M, Fukunaga T, Sasaki K, Seiryu M, Yoshizawa M, Takeshita N, Takano-Yamamoto T. Vibration enhances osteoclastogenesis by inducing RANKL expression via NF-κB signaling in osteocytes. Bone. 2019. 123. 56-66
MISC (4):
Awards (1):
  • 2021/11 - 日本矯正歯科学会 日本矯正歯科学会 学術奨励賞 Vibration enhances osteoclastogenesis by inducing RANKL expression via NF-κB signaling in osteocytes
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