Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Koichi Enomoto"'
Publikováno v:
CLINICAL ORTHOPAEDICS AND RELATED RESEARCH. 469(2):600-606
Major disadvantages of antibiotic bone cements include limited drug release and reduced strength resulting from the addition of high doses of antibiotics. Bacterial cellulose, a three-dimensional hydrophilic mesh, may retain antibiotics and release t
Publikováno v:
Journal of Fermentation and Bioengineering. 72:258-261
A bacterial strain H65-7 isolated from soil as an inulin-assimilating microorganism produces inulin fructotransferase (inulase II) which converts inulin into di- d -fructofuranose-1,2′:2,3′-dianhydride (DFA III). This strain was classified as Art
Publikováno v:
Journal of Fermentation and Bioengineering. 72:262-265
Arthrobacter sp. H65-7 produced inulin fructotransferase (depolymerizing) which converts inulin into di- d -fructofuranose 1, 2′ : 2, 3′ dianhydride (DFA III) and small amounts of oligosaccharides. The enzyme was purified 8-fold with a yield of 1
Autor:
Koichi Enomoto, Takao Ikariya, Takakazu Fukushima, Yo Osada, Tsutomu Shikada, Sadao Ogasawara
Publikováno v:
ChemInform. 21
The Y2O3–CaO catalyst system, which is active for the oxidative coupling of methane to form C2 hydrocarbons, catalysed the oxidative methylation of toluene using methane as the methylene source, to give ethylbenzene and styrene; the addition of alk
Autor:
Koichi Enomoto, Takashi Maeno
Publikováno v:
Proceedings of the Japan Academy, Series B. 56:486-491
Publikováno v:
Brain research bulletin. 4(1)
Autor:
Sadao Ogasawara, Takao Ikariya, Tsutomu Shikada, Yo Osada, Koichi Enomoto, Takakazu Fukushima
Publikováno v:
J. Chem. Soc., Chem. Commun.. :1156-1157
The Y2O3–CaO catalyst system, which is active for the oxidative coupling of methane to form C2 hydrocarbons, catalysed the oxidative methylation of toluene using methane as the methylene source, to give ethylbenzene and styrene; the addition of alk