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首页> 外文期刊>Journal of the Ceramic Society of Japan >Enzyme encapsulation in silica particles prepared using enzyme-assisted sol–gel reactions in ionic liquids
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Enzyme encapsulation in silica particles prepared using enzyme-assisted sol–gel reactions in ionic liquids

机译:在离子液体中使用酶辅助溶胶-凝胶反应制备的二氧化硅颗粒中的酶包封

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Several studies have demonstrated the use of biomimetic approaches in the synthesis of a variety of inorganic materials. In this study, a low-temperature and natural pH procedure for the synthesis of silica was developed using hydrolytic enzymes. For the preparation of silica particles at room temperature and pH 7, a screening test for enzyme-catalyzing direct hydrolysis and polycondensation of tetraethoxysilane by using 5 types of hydrolases; pepsin, trypsin, esterase, and two lipases were chosen as biocatalysts; moreover, these enzymes can promote the precipitation of silica within 3 days. The 29Si nuclear magnetic resonance (NMR) measurements indicated that the enzyme activity in ionic liquids was higher than that in aqueous buffer solutions, and that the obtained silica particles were highly polycondensed. Under ionic liquid conditions, it was observed that enzymes were effectively encapsulated in the sol–gel silica material. In addition, for siloxane bond formation the catalytic activity of silica–enzyme composites was higher than that of free solution enzymes.
机译:多项研究证明了仿生方法在多种无机材料合成中的应用。在这项研究中,使用水解酶开发了用于合成二氧化硅的低温自然pH程序。为了在室温和pH 7下制备二氧化硅颗粒,使用5种水解酶对四乙氧基硅烷进行酶催化直接水解和缩聚反应的筛选试验。选择胃蛋白酶,胰蛋白酶,酯酶和两种脂肪酶作为生物催化剂。而且,这些酶可以在三天内促进二氧化硅的沉淀。 29 核磁共振(NMR)测量结果表明,离子液体中的酶活性高于缓冲水溶液中的酶活性,并且所得的二氧化硅颗粒高度缩聚。在离子液体条件下,观察到酶被有效地封装在溶胶-凝胶二氧化硅材料中。此外,对于硅氧烷键的形成,二氧化硅-酶复合材料的催化活性高于游离溶液酶。

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