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Yoshiaki Sugita

Showing results (1-10 of 75) with videos related to

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Methods in Molecular Biology (Clifton, N.J.)|October 29, 2017
Pentamine as a Substrate for Measuring Spermine Oxidase ActivityKoichi Takao, Yoshiaki Sugita
Amino Acids|December 4, 2009
Evaluation method for polyamine uptake by N(1)-dansylspermineKoichi Takao, Yoshiaki Sugita, Akira Shirahata
Chemical & Pharmaceutical Bulletin|May 8, 2015
Synthesis and biological evaluation of piperic acid amides as free radical scavengers and α-glucosidase inhibitorsKoichi Takao, Takaki Miyashiro, Yoshiaki Sugita
Biological & Pharmaceutical Bulletin|July 8, 2010
Assay of N1-acetylpolyamine oxidase activity with N1,N11-didansylnorspermine as the substrate by ion-pair reversed phase high performance liquid chromatographyKoichi Takao, Yoshiaki Sugita, Akira Shirahata
Chemical & Pharmaceutical Bulletin|August 5, 2014
Synthesis and biological evaluation of 3-styrylchromone derivatives as free radical scavengers and α-glucosidase inhibitorsKoichi Takao, Ryo Ishikawa, Yoshiaki Sugita
The Journal of Organic Chemistry|June 11, 2024
Synthesis of Daldinans and Dynamic Stereochemistry of their AtropisomersHitoshi Kamauchi, Miki Goto, Yoshiaki Sugita
Anticancer Research|October 25, 2017
Search for New Type of Anticancer Drugs with High Tumor Specificity and Less Keratinocyte ToxicityYoshiaki Sugita, Koichi Takao, Yoshihiro Uesawa, et al.
Bioorganic Chemistry|April 2, 2019
Design, synthesis and evaluation of 2-(indolylmethylidene)-2,3-dihydro-1-benzofuran-3-one and 2-(indolyl)-4H-chromen-4-one derivatives as novel monoamine oxidases inhibitorsKoichi Takao, Shiori U, Hitoshi Kamauchi, et al.
Bioorganic Chemistry|November 15, 2018
Synthesis and biological evaluation of pyrano[4,3-b][1]benzopyranone derivatives as monoamine oxidase and cholinesterase inhibitorsKoichi Takao, Yuka Kubota, Hitoshi Kamauchi, et al.
Chemical & Pharmaceutical Bulletin|November 2, 2020
Syntheses and Evaluation of 2- or 3-(N-Cyclicamino)chromone Derivatives as Monoamine Oxidase InhibitorsKoichi Takao, Tsukasa Sakatsume, Hitoshi Kamauchi, et al.
Pageof 8

Showing results (1-10 of 75) with videos related to

Sort By:
Pageof 8
Methods in Molecular Biology (Clifton, N.J.)|October 29, 2017
Pentamine as a Substrate for Measuring Spermine Oxidase ActivityKoichi Takao, Yoshiaki Sugita
Amino Acids|December 4, 2009
Evaluation method for polyamine uptake by N(1)-dansylspermineKoichi Takao, Yoshiaki Sugita, Akira Shirahata
Chemical & Pharmaceutical Bulletin|May 8, 2015
Synthesis and biological evaluation of piperic acid amides as free radical scavengers and α-glucosidase inhibitorsKoichi Takao, Takaki Miyashiro, Yoshiaki Sugita
Biological & Pharmaceutical Bulletin|July 8, 2010
Assay of N1-acetylpolyamine oxidase activity with N1,N11-didansylnorspermine as the substrate by ion-pair reversed phase high performance liquid chromatographyKoichi Takao, Yoshiaki Sugita, Akira Shirahata
Chemical & Pharmaceutical Bulletin|August 5, 2014
Synthesis and biological evaluation of 3-styrylchromone derivatives as free radical scavengers and α-glucosidase inhibitorsKoichi Takao, Ryo Ishikawa, Yoshiaki Sugita
The Journal of Organic Chemistry|June 11, 2024
Synthesis of Daldinans and Dynamic Stereochemistry of their AtropisomersHitoshi Kamauchi, Miki Goto, Yoshiaki Sugita
Anticancer Research|October 25, 2017
Search for New Type of Anticancer Drugs with High Tumor Specificity and Less Keratinocyte ToxicityYoshiaki Sugita, Koichi Takao, Yoshihiro Uesawa, et al.
Bioorganic Chemistry|April 2, 2019
Design, synthesis and evaluation of 2-(indolylmethylidene)-2,3-dihydro-1-benzofuran-3-one and 2-(indolyl)-4H-chromen-4-one derivatives as novel monoamine oxidases inhibitorsKoichi Takao, Shiori U, Hitoshi Kamauchi, et al.
Bioorganic Chemistry|November 15, 2018
Synthesis and biological evaluation of pyrano[4,3-b][1]benzopyranone derivatives as monoamine oxidase and cholinesterase inhibitorsKoichi Takao, Yuka Kubota, Hitoshi Kamauchi, et al.
Chemical & Pharmaceutical Bulletin|November 2, 2020
Syntheses and Evaluation of 2- or 3-(N-Cyclicamino)chromone Derivatives as Monoamine Oxidase InhibitorsKoichi Takao, Tsukasa Sakatsume, Hitoshi Kamauchi, et al.
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