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Dive into the research topics where Yasuhiro Sawai is active.

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Featured researches published by Yasuhiro Sawai.


Journal of Organic Chemistry | 2013

Double Reformatsky Reaction: Divergent Synthesis of δ-Hydroxy-β-ketoesters

Masahiro Mineno; Yasuhiro Sawai; Kazuaki Kanno; Naotaka Sawada; Hideya Mizufune

The double Reformatsky reaction, tandem addition of two molecules of zinc alkanoate to a carbonyl compound, and its synthetic application to a series of δ-hydroxy-β-ketoesters has been developed. The key to accelerate the double Reformatsky reaction is considered to be a complex-induced proximity effect of the in situ generated zinc alkoxide coordinated with the pyridyl group of the substrate or bidentate amines. A noteworthy feature of the reaction system is its high tolerance of functional groups due to the moderate nucleophilicity of organozinc reagents and the mild reaction conditions. Moreover, spectroscopic and crystallographic analyses of the zinc complex of the double Reformatsky product support the proposed mechanism of reaction site discrimination for ketones, aldehydes, nitriles, carboxylic acid anhydrides, and esters.


Journal of Organic Chemistry | 2016

A Nitrogen-Assisted One-Pot Heteroaryl Ketone Synthesis from Carboxylic Acids and Heteroaryl Halides

Krystyna Demkiw; Hirofumi Araki; Eric L. Elliott; Christopher L. Franklin; Yoonjoo Fukuzumi; Frederick A. Hicks; Kazushi Hosoi; Tadashi Hukui; Yoichiro Ishimaru; Erin O’Brien; Yoshimasa Omori; Masahiro Mineno; Hideya Mizufune; Naotaka Sawada; Yasuhiro Sawai; Lei Zhu

A practical and highly effective one-pot synthesis of versatile heteroaryl ketones directly from carboxylic acids and heteroaryl halides under mild conditions is reported. This method does not require derivatization of carboxylic acids (preparation of acid chlorides, Weinreb amides, etc.) or the use of any additives/catalysts. A wide substrate scope of carboxylic acids with high functional group tolerance has also been demonstrated. The results reveal that the presence of an α-nitrogen on the halide substrate greatly improves the desired ketone formation.


Tetrahedron | 2009

A practical synthesis of enantiopure β-methyltryptophan ethyl ester for a preparation of diabetes drug

Yasuhiro Sawai; Masahiro Mizuno; Tatsuya Ito; Jun-ichi Kawakami; Mitsuhisa Yamano


Archive | 2001

Method for producing 1-substituted-1,2,3- triazole derivative

Tomomi Ikemoto; Tatsuya Ito; Kiminori Tomimatsu; Yasuhiro Sawai; Hirohiko Nishiyama; Yasushi Isogami


Tetrahedron | 2013

Convergent and streamlined synthesis of 6-etherified imidazo[1,2-b]pyridazine-2-amine derivatives possessing VEGFR-2 kinase inhibitory activity

Kazuhisa Ishimoto; Yasuhiro Sawai; Naohiro Fukuda; Toshiaki Nagata; Tomomi Ikemoto


Tetrahedron | 2006

Syntheses of metabolites of ethyl 4-(3,4-dimethoxyphenyl)-6,7-dimethoxy-2-(1,2,4-triazol-1-ylmethyl)quinoline-3-carboxylate (TAK-603)

Masahiro Mizuno; Makoto Yamashita; Yasuhiro Sawai; Koji Nakamoto; Mitsutaka Goto


Tetrahedron | 2014

Synthesis of a stable triformylmethane synthon and its scalable application to 7-acylamino-3-formylquinoline syntheses

Yasuhiro Sawai; Masahiro Mizuno; Tatsuya Ito; Mitsuhisa Yamano


Organic Process Research & Development | 2014

Development of a Scalable Synthesis of a Vascular Endothelial Growth Factor Receptor-2 Kinase Inhibitor: Efficient Construction of a 6-Etherified [1,2,4]Triazolo[1,5-a]pyridine-2-amine Core

Kazuhisa Ishimoto; Naohiro Fukuda; Toshiaki Nagata; Yasuhiro Sawai; Tomomi Ikemoto


Tetrahedron | 2013

A rapid and diverse construction of 6-substituted-5,6-dihydro-4-hydroxy-2-pyrones through double Reformatsky reaction

Masahiro Mineno; Yasuhiro Sawai; Kazuaki Kanno; Naotaka Sawada; Hideya Mizufune


Organic Process Research & Development | 2017

Process Development of a CRF1 Receptor Antagonist Based on the Selective Chlorination of a Benzimidazolone via Chlorine Migration

Yasuhiro Sawai; Osamu Yabe; Keiichiro Nakaoka; Tomomi Ikemoto

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Mitsuhisa Yamano

Takeda Pharmaceutical Company

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Tatsuya Ito

Takeda Pharmaceutical Company

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Tomomi Ikemoto

Takeda Pharmaceutical Company

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Naotaka Sawada

Takeda Pharmaceutical Company

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Kazuaki Kanno

Takeda Pharmaceutical Company

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Masahiro Mizuno

Takeda Pharmaceutical Company

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Hideya Mizufune

Takeda Pharmaceutical Company

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Kiminori Tomimatsu

Takeda Pharmaceutical Company

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Masahiro Mineno

Takeda Pharmaceutical Company

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Yasushi Isogami

Takeda Pharmaceutical Company

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