Kohno Yoshiro | Department Of Drug Metabolism Medicinal Research Laboratory Taisho Pharmaceutical Co. Ltd.
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概要
- KOHNO Yoshiroの詳細を見る
- 同名の論文著者
- Department Of Drug Metabolism Medicinal Research Laboratory Taisho Pharmaceutical Co. Ltd.の論文著者
関連著者
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KOHNO Yoshiro
Department of Drug Metabolism, Medicinal Research Laboratory, Taisho Pharmaceutical Co., Ltd.
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Kohno Yoshiro
Department Of Drug Metabolism Medicinal Research Laboratory Taisho Pharmaceutical Co. Ltd.
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SUWA Toshio
Department of Drug Development Science & Clinical Evaluation, Kyoritsu University of Pharmacy
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Kohno Yoshiro
大正製薬(株)開発研究所薬物動態研究室
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Suwa T
大正製薬(株)開発研究所薬物動態研究室
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Suwa Toshio
Dept.of Biochemistry Tokyo College Of Pharmacy:(present Address) Research Center Taisho Pharmaceutic
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Fukumoto Kyoko
Department Of Pharmacokinetics Kyoto Pharmaceutical University
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FUKUSHIMA Kiyomi
Department of Drug Metabolism, Taisho Pharmaceutical Research Center
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Fukushima K
大正製薬(株)開発研究所薬物動態研究室
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AWAZU Shoji
Department of Biopharmaceutics, School of Pharmacy, Tokyo University of Pharmacy and Life Science
著作論文
- Metabolism of N, N-Dipropyl-2-[4-Methoxy-3-(2-Phenyl-Ethoxy)-Phenyl]-Ethyl-Amine-Monohydrochloride(NE-100), A Novel Sigma Ligand : Contribution of Cytochrome P450 Forms Involved in the Formation of Individual Metabolites in Human Liver and Small Intestine
- Retention Mechanism of Imidazoles in Connective Tissue. IV. Identification of a Nucleophilic imidazolone Metabolite in Rats
- Retention Mechanism of Imidazoles in Connective Tissue. III. Aldehyde Adduct Formation of a 4(5H)(or 5(4H))-Imidazolone Product in Vitro
- Retention Mechanism of Imidazoles in Connective Tissue. II. Activation of Imidazoles in Cupro-ascorbate System for Irreversible Binding Formation with Aortic Tissue in Vitro
- Relationship between the Metabolic Chiral Inversion and Chemical Structure of 4-Phenyl-4-oxobutanoic Acids, Derivatives of Anti-rheumatic Agent KE-298
- Application of Microtiter Plate Assay to Evaluate Inhibitory Effects of Various Compounds on Nine Cytochrome P450 Isoforms and to Estimate their Inhibition Patterns