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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Immobilization of Inulinase on Concanavalin A-Attached Super Macroporous Cryogel for Production of High-Fructose Syrup
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Immobilization of Inulinase on Concanavalin A-Attached Super Macroporous Cryogel for Production of High-Fructose Syrup

机译:菊糖酶固定在伴刀豆球蛋白A附着的超大孔冷冻凝胶上以生产高果糖糖浆

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In this study, concanavalin A (Con A)-attached poly(ethylene glycol dimethacrylate) [poly(EGDMA)] cryogels were used for immobilization of Aspergillus niger inulinase. For this purposes, the monolithic cryogel column was prepared by radical cryocopolymerization of EGDMA as a monomer and N,N'-methylene bisacrylamide as a crosslinker. Then, Con Awas attached by covalent binding onto amino-activated poly(EGDMA) cryogel via glutaraldehyde activation. Characterization of cryogels was performed by FTIR, EDX, and SEM studies. Poly(EGDMA) cryogels were highly porous and pore size was found to be approximately 50- 100 μm. Con A-attached poly(EGDMA) cryogels was used in the adsorption of inulinase from aqueous solutions. Adsorption of inulinase on the Con A-attached poly(EGDMA) cryogel was performed in continuous system and the effects of pH, inulinase concentration, and flow rate on adsorption were investigated. The maximum amount of inulinase adsorption was calculated to be 27.85 mg/g cryogel at 1.0 mg/mL inulinase concentration and in acetate buffer at pH 4.0. Immobilized inulinase was effectively used in continuous preparation of high-fructose syrup. Inulin was converted to fructose in a continuous system and released fructose concentration was found to be 0.23 mg/mL at the end of 5 min of hydrolysis. High-fructose content of the syrup was demonstrated by thin layer chromatography.
机译:在这项研究中,使用伴有伴刀豆球蛋白A(Con A)的聚乙二醇二甲基丙烯酸酯[poly(EGDMA)]冷冻凝胶固定黑曲霉菊粉酶。为此,通过EGDMA作为单体和N,N'-亚甲基双丙烯酰胺作为交联剂的自由基冷冻共聚反应制备了整体式冻凝胶柱。然后,Con A通过戊二醛活化共价结合到氨基活化聚(EGDMA)冷冻凝胶上。通过FTIR,EDX和SEM研究对冰晶进行表征。聚(EGDMA)冰晶是高度多孔的,发现孔径约为50-100μm。连接Con A的聚(EGDMA)冷冻凝胶用于从水溶液中吸附菊粉酶。在连续系统中进行了菊粉酶在附有Con A的聚(EGDMA)冷冻凝胶上的吸附,并研究了pH,菊粉酶浓度和流速对吸附的影响。菊粉酶的最大吸附量经计算为菊粉酶浓度为1.0 mg / mL时在pH 4.0的醋酸盐缓冲液中为27.85 mg / g冷冻凝胶。固定的菊粉酶有效地用于连续制备高果糖糖浆。菊粉在连续系统中转化为果糖,在水解5分钟结束时发现释放的果糖浓度为0.23 mg / mL。通过薄层色谱法证实了糖浆的高果糖含量。

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