期刊论文详细信息
JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
Development of Novel Immobilization Supports of Lipase for Reactions in Organic Media: Seed Polymerization of Amphiphilic 2-[p-(1, 1, 3, 3-Tetramethyl-Butyl) Phenoxy-Polyethoxy] Ethyl Methacrylate Macromonomers
Hirofumi Yoneda1  Masayuki Okamoto1  Taiki Imakiire1  Hiroyasu Ogino1  Kosaku Ishimi1  Haruo Ishikawa1  Masahiro Yasuda1 
[1]Department of Chemical Engineering, Osaka Prefecture University
关键词: 2-[p-(1;    1;    3;    3-Tetramethyl-Butyl) Phenoxy-Polyethoxy] Ethyl Methacrylate;    Seed Polymerization;    Macromonomer;    Enzyme Immobilization;   
DOI  :  10.1252/jcej.35.519
来源: Maruzen Company Ltd
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【 摘 要 】
References(22)Cited-By(1)To develop a novel support of enzymes for use in the enzymatic reactions in nonaqueous solutions, amphiphilic polymer particles which have 2-[p-(1, 1, 3, 3-tetramethyl-butyl)phenoxy-polyethoxy]ethyl groups (tert-C8ΦEn groups; n is the mean number of the ethylene oxide units) were synthesized by the seed copolymerization of styrene, divinylbenzene, and 2-[p-(1, 1, 3, 3-tetramethyl-butyl)phenoxy-polyethoxy]ethyl methacrylate (MAX-n). In seed polymerization, the mean number n of the tert-C8ΦEn group did not affect the monomer conversions and the amount of MAX-n introduced into the particles. Using Rhizopus delemar lipase as a model enzyme, the enzyme immobilization on the amphiphilic polymer particles was investigated. The specific hydrolytic activity of the immobilized lipase prepared with the amphiphilic polymer particles was higher than that of native lipase. When the amphiphilic particles synthesized using MAX-15.9 were used to immobilize lipase, the amount of lipase immobilized and the hydrolytic activity and the transesterification activity of the immobilized lipase were the highest. However, the organic solvent stability of the immobilized lipase prepared with the amphiphilic particles synthesized using MAX-4.39 was the highest.
【 授权许可】

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