Tanaka Yorihisa | Department Of Drug Metabolism And Pharmacokinetics Tohoku Pharmaceutical University
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概要
関連著者
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Tanaka Yorihisa
Department Of Drug Metabolism And Pharmacokinetics Tohoku Pharmaceutical University
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Tanaka Y
Kyushu Univ. Fukuoka Jpn
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Tanaka Y
Toho Univ. School Of Pharmaceutical Sci. Chiba Jpn
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Tanaka Yoshitaka
Department of Drug Metabolism and Pharmacokinetics, Tohoku Pharmaceutical University
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Tanaka Yorihisa
Department Of Applied Chemistry National Defense Academy
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Itoh K
Department Of Pharmaceutical Sciences Tohoku University Hospital And Division Of Clinical Pharmacy G
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Itoh Kunio
Department Of Drug Metabolism And Pharmacokinetics Tohoku Pharmaceutical University
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Itoh Kunio
Department of Biopharmaceutics, Tohoku Pharmaceutical University
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Adachi Mayuko
Department Of Drug Metabolism And Pharmacokinetics Tohoku Pharmaceutical University
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Watanabe Nobuaki
Drug Metabolism And Pharmacokinetics Research Laboratories Daiichi-sankyo Co. Ltd.
著作論文
- Effects of Selenium Deficiency on Aldehyde Oxidase 1 in Rats(Molecular and Cell Biology)
- Mechanism of Resistance to Oxidative Stress in Doxorubicin Resistant Cells
- Lysosomal Cysteine Protease, Cathepsin H, Is Targeted to Lysosomes by the Mannose 6-Phosphate-Independent System in Rat Hepatocytes
- Lysosomal Cystein Protease, Cathepsin B, Is Targeted to Lysosomes by the Mannose 6-Phosphate-Independent Pathway in Rat Hepatocytes: Site-Specific Phosphorylation in Oligosaccharides of the Proregion
- Stereoselective Pharmacokinetics of RS-8359,A Selective and Reversible Inhibitor of A-Type Monoamine Oxidase, in Rats, Mice, Dogs, and Monkeys
- Quantitative determination of diol metabolites of CS-670, a new antiinflammatory agent, by capillary column gas chromatography-mass spectrometry
- Functional Analysis of Aldehyde Oxidase Using Expressed Chimeric Enzyme between Monkey and Rat(Molecular and Cell Biology)
- Properties of 130 kDa Subunit of Monkey Aldehyde Oxidase(Molecular and Cell Biology)
- Cloning, Expression, and Characterization of Male Cynomolgus Monkey Liver Aldehyde Oxidase(Biochemistry)
- Substrate Selectivity of Monoamine Oxidase A, Monoamine Oxidase B, Diamine Oxidase, and Semicarbazide-Sensitive Amine Oxidase in COS-1 Expression Systems(Biochemistry)