TRPA1 as tools for the predictive identification of sensory irritation by alkali pH
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概要
- 論文の詳細を見る
- 2008-12-31
著者
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Sokabe Takaaki
Section Of Cell Signaling Okazaki Institute For Integrative Bioscience National Institutes Of Natura
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Sokabe Takaaki
Section Of Cell Signaling National Institute For Physiological Sciences Okazaki Institute For Integr
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FUJITA Fumitaka
Central Research Laboratories, Mandom Corp.
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UCHIDA Kunitoshi
Section of Cell Signaling, National Institute for Physiological Sciences, Okazaki Institute for Inte
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SHIBASAKI Koji
Section of Cell Signaling, National Institute for Physiological Sciences, Okazaki Institute for Inte
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INADA Hitoshi
Section of Cell Signaling, National Institute for Physiological Sciences, Okazaki Institute for Inte
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TOMINAGA Makoto
Section of Cell Signaling, National Institute for Physiological Sciences, Okazaki Institute for Inte
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Tominaga Makoto
Section Of Cell Signaling National Institute For Physiological Sciences Okazaki Institute For Integr
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Inada Hitoshi
Section Of Cell Signaling National Institute For Physiological Sciences Okazaki Institute For Integr
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Shibasaki Koji
Section Of Cell Signaling National Institute For Physiological Sciences Okazaki Institute For Integr
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Fujita Fumitaka
Central Research Laboratories Mandom Corp.
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Uchida Kunitoshi
Section Of Cell Signaling National Institute For Physiological Sciences Okazaki Institute For Integr
関連論文
- TRPA1 as tools for the predictive identification of sensory irritation by alkali pH
- 1P376 Structural Analysis of Non-Selective Cation Channel TRPV4 using a Phase-Contrast Transmission Electron Microscope(14. Ion channels and receptors,Poster Session,Abstract,Meeting Program of EABS & BSJ 2006)
- Non-Pungent Capsaicin Analogs (Capsinoids) Increase Metabolic Rate and Enhance Thermogenesis via Gastrointestinal TRPV1 in Mice