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Dive into the research topics where Shoji Takemura is active.

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Featured researches published by Shoji Takemura.


Heterocycles | 1991

A new entry to [2.3.4]cyclazines

Yasuyoshi Miki; Hiroko Hachiken; Masayuki Yoshikawa; Shoji Takemura; M. Ikeda

Treatment of 2,3-dihydro-2-methyl-3-phenyl-1H- pyrazino 3,4,5-cd indolizine 2-oxides (5) with trifluoroacetic anhydride gave new heterocyclic six-membered betaines (6) which underwent 1,3-dipolar cycloaddition reaction with dimethyl acetylenedicarboxylate and maleimides in hot toluene to yield the corresponding cycloadducts (7) and (8). Treatment of the maleimide adducts (8) with p-toluenesulfonic acid in boiling acetic acid gave the [2.3.4]cyclazines (9)


Journal of The Chemical Society-perkin Transactions 1 | 1985

Synthesis of peri-fused indolizines and azaindolizines by intramolecular 1,3-dipolar cycloaddition of 3-(phenylpropynoyloxyalkyl)pyridine N-ylides

Yasuyoshi Miki; Masumi Uragi; Shoji Takemura; Masazumi Ikeda

Treatment of 3-(phenylpropynoyloxymethyl)-N-aminopyridinium salt with potassium carbonate in methanol gave unexpectedly 4-methyl-2-phenylpyrazolo [1,5-a]pyridine and methyl 6- and 4-hydroxy-methyl-2-phenylpyrazolo[1,5-a]pyridine-3-carboxylates. Similar treatment of N-methoxycarbonyl-methyl-3-(phenylpropynoyloxymethyl)pyridinium salt again failed to give the intramolecular cycloaddition product. In contrast, the 3-[2-(phenylpropynoyloxy)ethyl], 3-[3-(phenylpropynoyloxy)propyl], and 3-[4(phenylpropynoyloxy)butyl] analogues underwent smooth intramolecular 1,3-dipolar cycloaddition to yield the tricyclic pyrazolo[1,5-a]pyridine and indolizine derivatives containing seven-, eight-, and nine-membered lactone rings.


Heterocycles | 1984

Novel synthesis and 1,3-dipolar cycloaddition reaction of pyridinium N-methylide

Yasuyoshi Miki; Hiroko Hachiken; Shoji Takemura; Masazumi Ikeda


Chemical & Pharmaceutical Bulletin | 1987

The ichthyotoxicity and coronary vasodilator action of 3 3' dihydroxy alpha beta diethylstilbene

Yoshihiko Inamori; Mayuri Kubo; Hiroshi Tsujibo; Masafumi Ogawa; Yoshinobu Saito; Yasuyoshi Miki; Shoji Takemura


Chemical & Pharmaceutical Bulletin | 1975

Reaction of N-Haloamide. XXI. Addition Reaction of N, N-Dibromo-benzylsulfonamide with Olefines and Reduction of the Adducts and Their Derivatives

Hiromi Terauchi; Shoji Takemura; Yoshio Ueno


Chemical & Pharmaceutical Bulletin | 1975

Reaction of N-Haloamide. XXV. Addition Reaction of N, N-Di-bromobenzenesulfonamide with Asymmetric Olefins and α, β-Unsaturated Carboxylic Acid Esters

Hiromi Terauchi; Akemi Yamasaki; Shoji Takemura


Clinical Chemistry | 2001

New Thiocholine Ester Substrates for the Assay of Human Serum Cholinesterase

Magohei Yamada; Yoji Marui; Chozo Hayashi; Yasuyoshi Miki; Shoji Takemura


Chemical & Pharmaceutical Bulletin | 1977

Reaction of N-Haloamide. XXVIII. Preparation of N, N-Dibromourethan and Reactions of N, N-Dihaloamides with Styrene and 1, 2-Dihydronaphthalenes

Hiromi Terauchi; Keiko Kowata; Toshie Minematsu; Shoji Takemura


Journal of Heterocyclic Chemistry | 2009

Acid-catalyzed reactions of 3-(hydroxymethyl)- and 3-(1-hydroxyethyl)pyrazolo[1,5-a]pyridines

Yasuyoshi Miki; Noriko Nakamura; Hiroko Hachiken; Shoji Takemura


Chemical & Pharmaceutical Bulletin | 1974

Reaction of N-Haloamide. XX. Bromo-formyloxylation of α, β-Unsaturated Esters with N, N-Dibromobenzenesulfonamide and Formic Acid

Yoshio Ueno; Akemi Yamasaki; Hiromi Terauchi; Shoji Takemura

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Yoshihiko Inamori

Osaka University of Pharmaceutical Sciences

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Hiroshi Tsujibo

Osaka University of Pharmaceutical Sciences

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