Yamamoto Ikuo | Hygienic Chemistry School Of Pharmacy Hokuriku University
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概要
関連著者
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Yamamoto Ikuo
北陸大学 薬 衛化
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Yamamoto Ikuo
Hygienic Chemistry School Of Pharmacy Hokuriku University
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YAMAMOTO IKUO
Hygienic Chemistry
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Yamamoto Ikuo
Department Of Hygienic Chemistry School Of Pharmaceutical Sciences Kyushu University Of Health And W
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Watanabe Kazuhito
Department of Hygienic Chemistry, Faculty of Pharmaceutical Sciences, Hokuriku University
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YAMAMOTO Ikuo
School of Pharmaceutical Sciences, Kyushu University of Health and Welfare
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Watanabe Kazuhito
Department Of Hygienic Chemistry Faculty Of Pharmaceutical Sciences Hokuriku University
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Yamamoto I
Hygienic Chemistry
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Watanabe Kazuhito
Faculty Of Pharmaceutical Sciences Kyushu University
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Yamamoto Ikuo
Department Of Hygienic Chemistry Faculty Of Pharmaceutical Sciences Hokuriku University
著作論文
- Butyrylcholinesterase and Erythrocyte Sulfhydryl-dependent Enzyme Hydrolyze Gabexate in Human Blood
- Involvement of Human Blood Arylesterases and Liver Microsomal Carboxylesterases in Nafamostat Hydrolysis
- Hepatic Metabolism of Methyl Anthranilate and Methyl N-Methylanthranilate as Food Flavoring Agents in Relation to Allergenicity in the Guinea Pig
- Stereospecific and Regioselective Hydrolysis of Cannabinoid Esters by ES46.5K, an Esterase from Mouse Hepatic Microsomes, and Its Differences from Carboxylesterases of Rabbit and Porcine Liver(Biochemistry)
- In Vitro Inhibitory Effects of Cannabinoids on Progesterone 17α-Hydroxylase Activity in Rat Testis Microsomes
- Synthesis of N^3-Substituted Uridine and Related Pyrimidine Nucleosides and Their Antinociceptive Effects in Mice
- Major Cytochrome P450 Enzymes Responsible for Microsomal Aldehyde Oxygenation of 11-Oxo-〓^8-tetrahydrocannabinol and 9-Anthraldehyde in Human Liver
- Skin Reaction Induced by Aldehydes for Food Flavoring Agents
- Possible Existence of a Novel Receptor for Uridine Analogues in the Central Nervous System Using Two Isomers, N^3-(S)-(+)-and N^3-(R)-(-)-α-Hydroxy-β-phenethyluridines
- Hypnotic Action of N^3-Substituted Arabinofuranosyluracils on Mice