Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Yasufumi Kawanaka is active.

Publication


Featured researches published by Yasufumi Kawanaka.


Bioorganic & Medicinal Chemistry | 2002

Design and synthesis of a selective EP4-receptor agonist. Part 4: practical synthesis and biological evaluation of a novel highly selective EP4-receptor agonist

Toru Maruyama; Shin-itsu Kuwabe; Yasufumi Kawanaka; Tai Shiraishi; Yoshiyuki Shinagawa; Kiyoto Sakata; Akiteru Seki; Yoko Kishida; Hideyuki Yoshida; Takayuki Maruyama; Shuichi Ohuchida; Hisao Nakai; Shinsuke Hashimoto; Masanori Kawamura; Kigen Kondo; Masaaki Toda

A practical method of synthesizing a highly selective EP4-receptor agonist 1 using Corey lactone 2 as a key intermediate was developed. Selective methanesulfonylation of the primary alcohol of the diol 8 under the newly devised conditions followed by the protection of the remaining secondary alcohol are key reactions in this new method. Further biological evaluation of 1a-b is also reported.


Bioorganic & Medicinal Chemistry | 2003

Design and synthesis of orally bioavailable inhibitors of inducible nitric oxide synthase. synthesis and biological evaluation of dihydropyridin-2(1H)-imines and 1,5,6,7-tetrahydro-2H-azepin-2-imines.

Yasufumi Kawanaka; Kaoru Kobayashi; Shinya Kusuda; Tadashi Tatsumi; Masayuki Murota; Toshihiko Nishiyama; Katsuya Hisaichi; Atsuko Fujii; Keisuke Hirai; Minoru Nishizaki; Masao Naka; Masaharu Komeno; Hisao Nakai; Masaaki Toda

The process of discovery and biological evaluation of alpha,beta-unsaturated cyclic amidines, as selective inhibitors of inducible nitric oxide synthase (iNOS), is reported. Dihydropyridin-2(1H)-imines and 1,5,6,7-tetrahydro-2H-azepin-2-imines were synthesized and biologically evaluated both in vitro and in vivo using a nitric oxide synthase inhibition assay. Compounds 1, 5, 6, 8-12 and 16 exhibited potent inhibition of iNOS. Among these, compounds 6, 7, 10, 11 and 16 showed 5- to 19-fold isoform selectivity. Compounds 1, 6, 10, 11 and 16 also showed potent inhibitory activity in the NOx accumulation assay in mice. Compounds 1 and 6 showed excellent bioavailability (BA) in rats when administered orally. Full details are presented here, including the structure-activity relationship (SAR) studies, the chemistry of these compounds, and the pharmacokinetic data and the computer-aided docking study of 10 with hiNOS.


Bioorganic & Medicinal Chemistry | 2003

Design and synthesis of orally bioavailable inhibitors of inducible nitric oxide synthase. Identification of 2-azabicyclo[4.1.0]heptan-3-imines.

Yasufumi Kawanaka; Kaoru Kobayashi; Shinya Kusuda; Tadashi Tatsumi; Masayuki Murota; Toshihiko Nishiyama; Katsuya Hisaichi; Atsuko Fujii; Keisuke Hirai; Masao Naka; Masaharu Komeno; Yshihiko Odagaki; Hisao Nakai; Masaaki Toda

Further chemical modification of 2-iminopiperidines fused to cyclopropane rings was performed. Optically active isomers 2 and 13 were synthesized and their biological activity was evaluated. Compound 2 exhibited greater potency and more isoform selectivity than enantiomer 13 in the iNOS inhibition assay. One of the gem-chlorines on the fused cyclopropane moiety of 2 was eliminated to produce 3, which showed reduced potency for iNOS inhibition, as well as 4 with an increased potency. The isoform selectivity of 4 was also much higher than that of 3. This was also true for the corresponding methyl derivatives 6-9. The structure-activity relationship (SAR) study and computer aided docking study of the most optimized structure 4 with human iNOS will also be reported.


European Journal of Medicinal Chemistry | 2003

Design and synthesis of inhibitors of inducible nitric oxide synthase. Discovery of a new chemical lead with potential for oral bioavailability

Yasufumi Kawanaka; Kaoru Kobayashi; Shinya Kusuda; Tadashi Tatsumi; Masayuki Murota; Toshihiko Nishiyama; Katsuya Hisaichi; Atsuko Fujii; Keisuke Hirai; Masao Naka; Masaharu Komeno; Hisao Nakai; Masaaki Toda

A series of 2-iminopiperidines fused to small-membered rings (Tables 1 and 2) were synthesised and biologically evaluated using an in vitro human nitric oxide synthase (NOS) inhibition assay. Fused bicyclic compounds 5-9 exhibited nearly the same potency as compound 1 in the hiNOS inhibition assay. Among these, the 1-methyl analogues 8 and 9 showed better isoform selectivity than their corresponding unsubstituted analogues 7 and 6, respectively. Compounds 5 and 6 were also evaluated by an in vivo NO accumulation assay in a mouse model. The discovery process of new chemical leads for an orally bioavailable inhibitor of human inducible NOS (iNOS) is reported. The structure-activity relationship (SAR) study and chemistry of these compounds are also reported.


Bioorganic & Medicinal Chemistry Letters | 2002

Design and synthesis of orally bioavailable inhibitors of inducible nitric oxide synthase. Part 1: synthesis and biological evaluation of dihydropyridin-2-imines

Yasufumi Kawanaka; Kaoru Kobayashi; Shinya Kusuda; Tadashi Tatsumi; Masanori Murota; Toshihiko Nishiyama; Katsuya Hisaichi; Atsuko Fujii; Keisuke Hirai; Masao Naka; Masaharu Komeno; Hisao Nakai; Masaaki Toda

Dihydropyridin-2-imines were synthesized and biologically evaluated both in vitro and in vivo using a nitric oxide inhibition assay. Compounds 1, 4, 5 and 7-11 exhibited potent activity in the inducible nitric oxide (iNOS) inhibition assay. Of these 5, 6, 9 and 10 showed 5- to 11-fold increases in isoform selectivity. Compounds 1, 5, 9 and 10 showed potent inhibitory activity in the NOx accumulation assay in mice. Compounds 1 and 5 also showed good bioavailability (BA) when given orally.


Bioorganic & Medicinal Chemistry | 2002

A practical synthesis and biological evaluation of 9-halogenated PGF analogues.

Kousuke Tani; Atsushi Naganawa; Akiharu Ishida; Hiromu Egashira; Yoshihiko Odagaki; Toru Miyazaki; Tomoyuki Hasegawa; Yasufumi Kawanaka; Kenji Sagawa; Hiroyuki Harada; Mikio Ogawa; Takayuki Maruyama; Hisao Nakai; Shuichi Ohuchida; Kigen Kondo; Masaaki Toda

A series of 9-halo PGF analogues 1-2 and 5-13 were synthesized and biologically evaluated. Among the compounds, 2 was the best EP2-receptor agonist. A practical method of synthesizing 2 via the Julia olefination of an aldehyde 3 with an optically active sulfone 4, which was prepared by Sharpless asymmetric epoxidation of 15, was developed. Other 9-halogenated PGF analogues were synthesized essentially by the same procedure and evaluated. The absolute configuration of 16-OH of 2 was determined as S by the X-ray analysis of a salt consisting of a 1/1 molar ratio of 2 and L-lysine.


Organic Process Research & Development | 2005

A new process for synthesis of the astrocyte activation suppressor, ONO-2506

Tomoyuki Hasegawa; Yasufumi Kawanaka; Eichi Kasamatsu; Chisa Ohta; Kazuhiro Nakabayashi; Masaki Okamoto; Masaya Hamano; Keiji Takahashi; and Shuichi Ohuchida; Yasumasa Hamada


Organic Process Research & Development | 2003

Process Development of ONO-2506: A Therapeutic Agent for Stroke and Alzheimer's Disease

Tomoyuki Hasegawa; Yasufumi Kawanaka; Eiji Kasamatsu; Yoichi Iguchi; Yoshihira Yonekawa; Masaki Okamoto; Chiaki Ohta; Shinsuke Hashimoto; Shuichi Ohuchida


Synlett | 2002

Synthesis of a highly selective EP2-receptor agonist

Kousuke Tani; Atsushi Naganawa; Akiharu Ishida; Hiromu Egashira; Yoshihiko Odagaki; Toru Miyazaki; Tomoyuki Hasegawa; Yasufumi Kawanaka; Hisao Nakai; Shuichi Ohuchida; Masaaki Toda


Archive | 2002

2-methylindole-4-acetic acid, process for producing the same, and process for producing intermediate therefor

Tomoyuki Hasegawa; Yasufumi Kawanaka

Collaboration


Dive into the Yasufumi Kawanaka's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Keisuke Hirai

Takeda Pharmaceutical Company

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Tadashi Tatsumi

Kyoto Prefectural University of Medicine

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge