Showing results (1-10 of 20) with videos related to
Sort By:
Pageof 2
Yakugaku Zasshi : Journal of the Pharmaceutical Society of Japan|December 3, 2009
[Individual and strain differences of aldehyde oxidase in the rat]Kunio ItohYakugaku Zasshi : Journal of the Pharmaceutical Society of Japan|September 6, 2016
An Analysis of the Educational Effects of Studying Basic Life SupportToshihiko Watanabe, Kunio Itoh, Akihiko YonezawaBiological & Pharmaceutical Bulletin|March 4, 2005
Molecular cloning and characterization of rat semicarbazide-sensitive amine oxidaseYoshinori Ochiai, Kunio Itoh, Eiichi Sakurai, et al.Lower Urinary Tract Symptoms|April 18, 2018
Evaluation of Usefulness of Propiverine Hydrochloride in Poor Responders to Previous AnticholinergicsNaoya Masumori, Yuya Funato, Yasunobu Yamaguchi, et al.The Journal of Pharmacy and Pharmacology|March 16, 2006
Metabolism of nicotine in rat lung microvascular endothelial cellsYoshinori Ochiai, Eiichi Sakurai, Akio Nomura, et al.Biological & Pharmaceutical Bulletin|December 5, 2006
Substrate selectivity of monoamine oxidase A, monoamine oxidase B, diamine oxidase, and semicarbazide-sensitive amine oxidase in COS-1 expression systemsYoshinori Ochiai, Kunio Itoh, Eiichi Sakurai, et al.Chirality|April 28, 2006
Enantioselective 2-hydroxylation of RS-8359, a selective and reversible MAO-A inhibitor, by cytochrome P450 in mouse and rat liver microsomesKunio Itoh, Yumi Nishiya, Wataru Takasaki, et al.Journal of Biochemistry and Molecular Biology|December 1, 2007
Construction and expression of mutant cDNAs responsible for genetic polymorphism in aldehyde oxidase in Donryu strain ratsMayuko Adachi, Kunio Itoh, Akiko Masubuchi, et al.Biopharmaceutics & Drug Disposition|January 10, 2006
Species differences in enantioselective 2-oxidations of RS-8359, a selective and reversible MAO-A inhibitor, and cinchona alkaloids by aldehyde oxidaseKunio Itoh, Mayumi Yamamura, Wataru Takasaki, et al.Drug Metabolism and Disposition: the Biological Fate of Chemicals|July 20, 2007
Lack of formation of aldehyde oxidase dimer possibly due to 377G>A nucleotide substitutionKunio Itoh, Hiroaki Maruyama, Mayuko Adachi, et al.Pageof 2