Novel Organic Nitrate Prodrug 4(R)-N-(2-Nitroxyethyl)-2-Oxothiazolidine-4-Carboxamide (RS-7897) Serves as a Xenobiotic Substrate for Pyroglutamyl Aminopeptidase I in Dogs
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概要
- 論文の詳細を見る
- 2003-12-25
著者
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Yamada Makiko
三共
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Yamada Makiko
Drug Metabolism And Pharmacokinetics Research Laboratories Sankyo Co. Ltd.
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IKEDA Toshihiko
Drug Metabolism and Pharmacokinetics Research Laboratories, Sankyo Co., Ltd.
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ABE Koji
Drug Metabolism and Pharmacokinetics Research Laboratories, Sankyo Co., Ltd.
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TERAO Toshio
Drug Metabolism and Pharmacokinetics Research Laboratories, Sankyo Co., Ltd.
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MIZUNO Hiroshi
Pharmacology and Molecular Biology Research Laboratories, Sankyo Co., Ltd.
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MATSUOKA Yuko
Pharmacology and Molecular Biology Research Laboratories, Sankyo Co., Ltd.
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YORIKANE Ryosuke
Pharmacology and Molecular Biology Research Laboratories, Sankyo Co., Ltd.
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TOKUI Taro
Drug Metabolism and Pharmacokinetics Research Laboratories, Sankyo Co., Ltd.
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Ikeda Toshihiko
Drug Metabolism And Pharmacokinetics Research Laboratories Sankyo Co. Ltd.
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Tokui Taro
Drug Metabolism And Pharmacokinetics Research Laboratories Sankyo Co. Ltd.
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Terao Toshio
Drug Metabolism And Pharmacokinetics Research Laboratories Sankyo Co. Ltd.
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Matsuoka Yuko
Pharmacology And Molecular Biology Research Laboratories Sankyo Co. Ltd.
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Yorikane Ryosuke
Pharmacology And Molecular Biology Research Laboratories Sankyo Co. Ltd.
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Abe Koji
Drug Metabolism And Pharmacokinetics Research Laboratories Sankyo Co. Ltd.
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Mizuno Hiroshi
Pharmacology And Molecular Biology Research Laboratories Sankyo Co. Ltd.
関連論文
- Structure Elucidation of Novel Metabolites of Gemfibrozil in Dog : Conjugation Reaction of Conjugated Metabolites
- Novel Organic Nitrate Prodrug 4(R)-N-(2-Nitroxyethyl)-2-Oxothiazolidine-4-Carboxamide (RS-7897) Serves as a Xenobiotic Substrate for Pyroglutamyl Aminopeptidase I in Dogs
- Pyroglutamyl Aminopeptidase I, as a Drug Metabolizing Enzyme, Recognizes Xenobiotic Substrates Containing L-2-Oxothiazolidine-4-carboxylic Acid(Biochemistry/Molecular Biology)
- Identification of Gemfibrozil Metabolites, Produced as Positional Isomers in Human Liver Microsomes, by On-line Analyses Using Liquid Chromatography/Mass Spectrometry and Liquid Chromatography/Nuclear Magnetic Resonance Spectroscopy
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