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Dive into the research topics where Daisuke Wakasugi is active.

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Featured researches published by Daisuke Wakasugi.


Bioorganic & Medicinal Chemistry | 2011

Discovery of novel (4-piperidinyl)-piperazines as potent and orally active acetyl-CoA carboxylase 1/2 non-selective inhibitors: F-Boc and triF-Boc groups are acid-stable bioisosteres for the Boc group.

Tomomichi Chonan; Daisuke Wakasugi; Daisuke Yamamoto; Miyoko Yashiro; Takahiro Oi; Hiroaki Tanaka; Ayumi Ohoka-Sugita; Fusayo Io; Hiroko Koretsune; Akira Hiratate

Novel (4-piperidinyl)-piperazine derivatives were synthesized and evaluated as ACC1/2 non-selective inhibitors. Optimization of the substituents on the nitrogen of the piperidine ring led to the identification of the fluorine substituted tert-butoxycarbonyl group. Advanced analog, 1,1,1-trifluoro-2-methylpropan-2-yl 4-{4-[(2-amino-6-methyl-1-benzothiophen-3-yl)carbonyl]piperazin-1-yl}piperidine-1-carboxylate (12c) showed potent inhibitory activities in enzyme-assay and cell-based assays. Compound 12c also exhibited reduction of hepatic de novo fatty acid synthesis in rats after oral administration.


Bioorganic & Medicinal Chemistry Letters | 2010

Design and synthesis of disubstituted (4-piperidinyl)-piperazine derivatives as potent acetyl-CoA carboxylase inhibitors.

Tomomichi Chonan; Hiroaki Tanaka; Daisuke Yamamoto; Miyoko Yashiro; Takahiro Oi; Daisuke Wakasugi; Ayumi Ohoka-Sugita; Fusayo Io; Hiroko Koretsune; Akira Hiratate

Acetyl-CoA carboxylases (ACCs), the rate limiting enzymes in de novo lipid synthesis, play important roles in modulating energy metabolism. The inhibition of ACC has demonstrated promising therapeutic potential for treating obesity and type 2 diabetes mellitus in transgenic mice and preclinical animal models. We describe herein the structure-based design and synthesis of a novel series of disubstituted (4-piperidinyl)-piperazine derivatives as ACC inhibitors. Our structure-based approach led to the discovery of the indole derivatives 13i and 13j, which exhibited potent in vitro ACC inhibitory activity.


Bioorganic & Medicinal Chemistry Letters | 2012

Isoquinoline derivatives as potent CRTH2 receptor antagonists: synthesis and SAR.

Rie Nishikawa-Shimono; Yoshinori Sekiguchi; Takeshi Koami; Madoka Kawamura; Daisuke Wakasugi; Kazuhito Watanabe; Shunichi Wakahara; Kayo Matsumoto; Tetsuo Takayama

Synthesis and structure-activity relationship of a novel series of isoquinoline CRTH2 receptor antagonists are described. One of the most potent compounds, TASP0376377 (6m), showed not only potent binding affinity (IC(50)=19 nM) but also excellent functional antagonist activity (IC(50)=13 nM). TASP0376377 was tested for its ability of a chemotaxis assay to show the effectiveness (IC(50)=23 nM), which was in good agreement with the CRTH2 antagonist potency. Furthermore, TASP0376377 showed sufficient selectivity for binding to CRTH2 over the DP1 prostanoid receptor (IC(50)>1 μM) and COX-1 and COX-2 enzymes (IC(50)>10 μM).


Bioorganic & Medicinal Chemistry Letters | 2009

(4-Piperidinyl)-piperazine: a new platform for acetyl-CoA carboxylase inhibitors.

Tomomichi Chonan; Takahiro Oi; Daisuke Yamamoto; Miyoko Yashiro; Daisuke Wakasugi; Hiroaki Tanaka; Ayumi Ohoka-Sugita; Fusayo Io; Hiroko Koretsune; Akira Hiratate

Acetyl-CoA carboxylases (ACCs), the rate limiting enzymes in de novo lipid synthesis, play important roles in modulating energy metabolism. The inhibition of ACC has demonstrated promising therapeutic potential for treating obesity and type 2 diabetes mellitus in transgenic mice and preclinical animal models. We describe herein the synthesis and structure-activity relationships of a series of disubstituted (4-piperidinyl)-piperazine derivatives as a new platform for ACC1/2 non-selective inhibitors.


Bioorganic & Medicinal Chemistry | 2013

Isoquinoline derivatives as potent CRTH2 antagonists: Design, synthesis and SAR

Rie Nishikawa-Shimono; Yoshinori Sekiguchi; Takeshi Koami; Madoka Kawamura; Daisuke Wakasugi; Kazuhito Watanabe; Shunichi Wakahara; Kayo Kimura; Susumu Yamanobe; Tetsuo Takayama

In this study, we describe the synthesis and structure-activity relationship (SAR) of a series of isoquinoline chemoattractant receptor-homologous molecule expressed on Th2 cells (CRTH2) antagonists. TASP0376377 (15-20), one of the most potent compounds, showed a potent binding affinity (IC50=19 nM) in addition to the excellent functional antagonist activity (IC50=13 nM). Moreover, the efficacy of this compound in a chemotaxis assay (IC50=23 nM) was in good agreement with its potency as a CRTH2 antagonist. In addition, 15-20 exhibited greater selectivity in binding to CRTH2 than to the DP1 prostanoid receptor (IC50 >1 μM) or the enzymes COX-1 and COX-2 (IC50 >10 μM).


Archive | 2011

1, 2, 4-TRIAZOLONE DERIVATIVE

Takeshi Kuwada; Mitsukane Yoshinaga; Tomoko Ishizaka; Daisuke Wakasugi; Shin-Ichi Shirokawa; Nobutaka Hattori; Youichi Shimazaki; Naoki Miyakoshi


Chemical & Pharmaceutical Bulletin | 2014

Isoquinoline Derivatives as Potent, Selective, and Orally Active CRTH2 Antagonists

Rie Nishikawa-Shimono; Yoshinori Sekiguchi; Madoka Kawamura; Daisuke Wakasugi; Masahumi Kawanishi; Kazuhito Watanabe; Yumiko Asakura; Akiko Takaoka; Tetsuo Takayama


Archive | 2017

derivado de azol, composição farmacêutica que o compreende e uso do mesmo

Daisuke Wakasugi; Mitsukane Yoshinaga; Naoki Miyakoshi; Nobutaka Hattori; Shin-Ichi Shirokawa; Takeshi Kuwada; Tomoko Ishizaka; Youichi Shimazaki


Archive | 2013

FUSED AZOLE DERIVATIVE

Mitsukane Yoshinaga; Tomoko Ishizaka; Daisuke Wakasugi; Shin-Ichi Shirokawa; Nobutaka Hattori; Shuhei Kashiwa; Takeshi Kuwada; Youichi Shimazaki


The Journal of Allergy and Clinical Immunology | 2012

Pharmacological Characterization of TASP0412098, A Selective CRTH2 (Chemoattractant Receptor-Homologous Molecule Expressed on Th2 Cells) Antagonist

M. Kawanishi; Kazuhito Watanabe; Yumiko Asakura; A. Oka; T. Naruse; R. Nishikawa; Tetsuo Takayama; Takeshi Koami; Daisuke Wakasugi; Madoka Kawamura; Akiko Takaoka; S. Tokita

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Takeshi Kuwada

Taisho Pharmaceutical Co.

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Tomoko Ishizaka

Taisho Pharmaceutical Co.

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Naoki Miyakoshi

Taisho Pharmaceutical Co.

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Madoka Kawamura

Taisho Pharmaceutical Co.

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Tetsuo Takayama

Taisho Pharmaceutical Co.

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