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首页> 外文期刊>European food research and technology =: Zeitschrift fur Lebensmittel-Untersuchung und -Forschung. A >Preparation of immobilized Trametes pubescens laccase on a cryogel-type polymeric carrier and application of the biocatalyst to apple juice phenolic compounds oxidation.
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Preparation of immobilized Trametes pubescens laccase on a cryogel-type polymeric carrier and application of the biocatalyst to apple juice phenolic compounds oxidation.

机译:冷冻凝胶型聚合物载体上固定化的 Trametes pubescens 漆酶的制备及其在苹果汁中酚类化合物氧化的生物催化剂的应用。

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摘要

A new biocatalyst was prepared by the immobilization of a Trametes pubescens laccase, into a wide-pore poly(vinyl alcohol) cryogel. The known enzyme was produced and purified by the previously described procedure. The resulted laccase (yield 40%) has an activity of 46.4 U mg--1 and 12.51 mg mL--1 protein content. The enzyme was subsequently immobilized in a functionalized macroporous cryogel beads by a covalent immobilization technique. The time dependence of the immobilization process and the enzyme loading of the carrier material (5.2 mg g--1 cryogel) were determined by measuring the decrease of protein amount in the enzyme solution. In conversion experiments, a higher stability of the immobilized biocatalyst compared to the free enzyme was evidenced. Steady-state kinetic characterization of four phenols (catechol, caffeic and chlorogenic acids, and catechin) has been performed with free and immobilized laccase, the catalytic parameters being determined and compared. The effect of both laccases (free and immobilized) on the phenol content of retailed apple juice samples, having the same initial composition, was also investigated by working in batch conversion. The variation in phenolic compound content has been compared with that of an untreated apple juice sample having initially the same content of phenolic compounds. A number of advantages resulted in using the immobilized laccase for the apple juice treatment (conservation to some extent of enzyme activity, higher content of phenols preserved, easy separation of the enzyme from the apple juice, therefore avoiding the possible unhealthy effects due to the remaining protein, etc.). copyright Springer-Verlag 2012.
机译:通过将 Trametes pubescens 漆酶固定到宽孔聚乙烯醇冷冻凝胶中,制备了一种新的生物催化剂。通过前述程序产生并纯化已知的酶。所得漆酶(收率40%)的活性为46.4 U mg -1 和12.51 mg mL -1 蛋白质含量。随后通过共价固定技术将酶固定在功能化的大孔冷冻凝胶珠中。通过测量酶溶液中蛋白质量的减少来确定固定过程的时间依赖性和载体材料(5.2 mg g -1 冷冻凝胶)的酶负荷。在转化实验中,证明了与游离酶相比,固定化生物催化剂具有更高的稳定性。四种酚(邻苯二酚,咖啡酸和绿原酸,儿茶素)的稳态动力学特征是使用游离的固定化漆酶进行的,确定并比较了催化参数。还通过分批进行转化研究了两种漆酶(游离的和固定的)对初始成分相同的零售苹果汁样品中酚含量的影响。已将酚类化合物含量的变化与最初具有相同酚类化合物含量的未处理苹果汁样品的变化进行了比较。将固定的漆酶用于苹果汁处理具有许多优点(在一定程度上保持了酶的活性,保留了较高的酚含量,易于将酶从苹果汁中分离出来,因此避免了由于残留而可能产生的不健康影响蛋白质等)。版权所有Springer-Verlag 2012。

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