Rchr
J-GLOBAL ID:201801004355883314   Update date: Jan. 30, 2024

Yoshida Takashi

Yoshida Takashi
Affiliation and department:
Job title: 准教授
Research field  (1): Cell biology
Research theme for competitive and other funds  (9):
  • 2023 - 2026 近赤外光活性化人工チャネルの創生による抗がん治療法の開発
  • 2020 - 2025 細胞種ごとに異なる発現パターンを示す小胞体内イオン輸送体の生理学的意義の解明
  • 2018 - 2023 The development of regulatory methods for osteocyte function using optogenetics
  • 2015 - 2018 The development of light-activatable proteins for inducing mechanical stimulation in the cells
  • 2015 - 2018 Pathophysiological analysis of oral diseases caused by dysregulation of cation channels
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Papers (19):
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MISC (17):
  • Takashi Yoshida, Kaori Takahashi, Minoru Wakamori. The inhibitory mechanism of eugenol on TRPV1 channel. JOURNAL OF PHARMACOLOGICAL SCIENCES. 2014. 124. 175P-175P
  • Takashi Yoshida, Kaori Takahashi, Takashi Kikuchi, Minoru Wakamori. The inhibitory mechanism of eugenol on TRPV1 channel. JOURNAL OF PHARMACOLOGICAL SCIENCES. 2013. 121. 171P-171P
  • Nobuaki Takahashi, Takashi Yoshida, Shinichiro Yamamoto, Yoshifumi Ueda, Yasuo Mori. Spatio-temporal regulation of intracellular Ca2+ and NO signaling by the TRPC5 channel complex. JOURNAL OF PHYSIOLOGICAL SCIENCES. 2013. 63. S196-S196
  • Takashi Yoshida, Takashi Kikuchi, Kaori Takahashi, Minoru Wakamori. The conflicting effects of eugenol on TRPV1 channel. JOURNAL OF PHARMACOLOGICAL SCIENCES. 2012. 118. 249P-249P
  • Takashi Yoshida, Minoru Wakamori. TRP channels play a role in the mouse osteoblast cell line MC3T3-E1 under shear stress. JOURNAL OF PHARMACOLOGICAL SCIENCES. 2011. 115. 220P-220P
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Lectures and oral presentations  (15):
  • 一酸化窒素のシステイン残基直接酸化修飾によるTRPチャネル活性化機構
    (第49回歯科基礎医学会学術大会 2007)
  • 一酸化窒素によるニトロシル化を介したTRP チャンネル活性化
    (第84回日本生理学会大会 2007)
  • NOによるニトロシル化を介したTRPチャネル活性化とそのシグナル統合における意義
    (細胞シグナリングの時空間統御機構解明への方略探索 2006)
  • Nitric-oxide directly activates TRP channels via oxidative cysteine modification
    (20th IUBMB International Congress of Biochemistry and Molecular biology 2006)
  • TRPチャネル拮抗剤による新規修飾方法の開発
    (第2回TRPチャネル研究会 2006)
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