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首页> 外文期刊>Journal of Chemical Engineering of Japan >Development of Immobilized Enzyme Entrapped within Inorganic Matrix and Its Catalytic Activity in Organic Medium
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Development of Immobilized Enzyme Entrapped within Inorganic Matrix and Its Catalytic Activity in Organic Medium

机译:在有机培养基中捕获在无机基质中的固定化酶及其在有机培养基中的催化活性

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References(10) Cited-By(14) A method for entrapment of enzymes within an inorganic matrix was developed using a sol-gel process. Such entrapping immobilization of biocatalysts within inorganic matrices has some benefits but it is rather difficult to apply in contrast to other types of immobilization and therefore has not been commercialized. The method developed was applied to entrapping lipase within silica beads. The entrapped lipase was six times more active for esterification in an organic medium than lipase immobilized over silica glass with a binding method which has conventionally been used. The high activity may come from the characteristics of the present method. It can entrap the enzyme with less denaturation and provide the matrix with physical properties suited to the reaction, e.g. an abumolance of macro pores.
机译:引用(10)所引用的(14)使用溶胶 - 凝胶法开发了一种用于在无机基质中抑制酶的方法。这种诱捕生物催化剂的生物催化剂在无机基质中具有一些好处,但与其他类型的固定相反,恰当难以施加,因此尚未商业化。将研制的方法应用于二氧化硅珠粒中的诱捕脂肪酶。捕获的脂肪酶在有机培养基中比固定在二氧化硅玻璃上的脂肪酶,其中包含常规使用的结合方法。高活性可能来自本方法的特征。它可以捕获酶的变性较少,并提供适合于反应的物理性质的基质,例如,宏观毛孔的幅度。

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