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Dive into the research topics where Takumi Takeyasu is active.

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Featured researches published by Takumi Takeyasu.


Journal of Medicinal Chemistry | 1996

Potent Inhibitors of Acyl-CoA:Cholesterol Acyltransferase. 2. Structure−Activity Relationships of Novel N-(2,2-Dimethyl-2,3-dihydrobenzofuran-7-yl)amides

Kenichiro Kataoka; Tatsuki Shiota; Takumi Takeyasu; Toru Minoshima; Kenzo Watanabe; Hiroko Tanaka; Tsutomu Mochizuki; Keiko Taneda; Mikio Ota; Hirofumi Tanabe; Hisao Yamaguchi

Novel N-(2,2-dimethyl-2,3-dihydrobenzofuran-7-yl)amide derivatives 1 were synthesized and tested for their ability to inhibit rabbit small intestinal ACAT (acyl-CoA:cholesterol acyltransferase) and lower serum total cholesterol in cholesterol-fed rats. Among the synthesized compounds, N-(2,2,4,6-tetramethyl-2,3-dihydrobenzofuran-7-yl)amide derivatives showed potent ACAT inhibitory activity. The synthesis and structure-activity relationships of these compounds are described. A methyl group at position 6 of the 2,3-dihydrobenzofuran moiety was important for potent ACAT inhibitory activity. In the series of N-(2,2,4,6-tetramethyl-2,3-dihydrobenzofuran-7-yl) amides, lipophilicity of the acyl moiety was necessary for the potent ACAT inhibitory activity. The highly lipophilic acid amides N-(2,2,4,6-tetramethyl-2,3-dihydrobenzofuran-7-yl)-2,2- dimethyldodecanamide (10) and 6-(4-chlorophenoxy)-N-(2,2,4,6-tetramethyl-2,3-dihydrobenzofuran-7-y l)-2,2-dimethyloctanamide (50) showed potent activity. Introduction of a dimethylamino group at position 5 of the 2,3-dihydrobenzofuran moiety resulted in highly potent activity. The most potent compound, N-[5-(dimethylamino)-2,2,4,6-tetramethyl-2,3-dihydrobenzofuran-7-yl ]-2,2-dimethyldodecanamide (13, TEI-6620), showed highly potent ACAT inhibitory activity (rabbit small intestine IC50 = 0.020 microM, rabbit liver IC50 = 0.009 microM), foam cell formation inhibitory activity (rat peritoneal macrophage IC50 = 0.030 microM), extremely potent serum cholesterol-lowering activity in cholesterol-fed rats (71% at a dose of 0.3 mg/kg/day po), and good bioavailability in fed dogs (Cmax = 2.68 microg/mL at 1 h, 10 mg/kg po).


Archive | 1999

Anthranilic acid derivatives

Naoki Tsuchiya; Susumu Takeuchi; Takumi Takeyasu; Naoki Hase; Takao Yamori; Takashi Tsuruo


Archive | 1995

Benzoxa condensed ring compounds, process for producing the same and pharmaceutical composition comprising the same

Tatsuki Shiota; Takumi Takeyasu; Kenichiro Kataoka; Tsutomu Mochizuki; Hirofumi Tanabe; Mikio Ota; Masatoshi Kano; Hisao Yamaguchi


Journal of Medicinal Chemistry | 1995

Potent inhibitors of acyl-CoA:cholesterol acyltransferase. Structure-activity relationships of novel N-(4-oxochroman-8-yl)amides

Kenichiro Kataoka; Tatsuki Shiota; Takumi Takeyasu; Tsutomu Mochizuki; Keiko Taneda; Mikio Ota; Hirofumi Tanabe; Hisao Yamaguchi


Archive | 2001

Cancer remedy comprising anthranilic acid derivative as active ingredient

Naoki Tsuchiya; Takumi Takeyasu; Takashi Kawamura; Takao Yamori; Takashi Tsuruo


Archive | 1991

Condensed benzoxa ring compound, production thereof, and pharmaceutical composition containing the same

Tatsuki Shiota; Takumi Takeyasu; Kenichiro Kataoka; Tsutomu Mochizuki; Hirofumi Tanabe; Mikio Ota; Masatoshi Kano; Hisao Yamaguchi


Archive | 1991

Benzopyran derivative, production thereof, and pharmaceutical composition containing the same.

Tatsuki Shiota; Takumi Takeyasu; Kenichiro Kataoka; Tsutomu Mochizuki; Hirofumi Tanabe; Mikio Ota; Hisao Yamaguchi


Archive | 2006

Crystal of Aminopyrrolidine Derivative and Production Method Thereof

Takumi Takeyasu; Yoshinori Sato; Asahi Kawana; Yuji Takahashi; Yuji Ishikawa; Kaoru Suda


Archive | 2003

Anthranilic acid derivative

Naoki Tsuchiya; Susumu Takeuchi; Takumi Takeyasu; Naoki Hase; Takao Yamori; Takashi Tsuruo


Archive | 1994

Benzopyran derivative, process for producing the same and pharmaceutical composition containing the same

Tatsuki Shiota; Takumi Takeyasu; Kenichiro Kataoka; Tsutomu Mochizuki; Hirofumi Tanabe; Mikio Ota; Hisao Yamaguchi

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