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Publication
Featured researches published by Yasufumi Kawanaka.
Bioorganic & Medicinal Chemistry | 2002
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
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
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
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
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
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
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
Tomoyuki Hasegawa; Yasufumi Kawanaka; Eiji Kasamatsu; Yoichi Iguchi; Yoshihira Yonekawa; Masaki Okamoto; Chiaki Ohta; Shinsuke Hashimoto; Shuichi Ohuchida
Synlett | 2002
Kousuke Tani; Atsushi Naganawa; Akiharu Ishida; Hiromu Egashira; Yoshihiko Odagaki; Toru Miyazaki; Tomoyuki Hasegawa; Yasufumi Kawanaka; Hisao Nakai; Shuichi Ohuchida; Masaaki Toda
Archive | 2002
Tomoyuki Hasegawa; Yasufumi Kawanaka