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首页> 外文期刊>Biomacromolecules >Lipase Immobilization on Differently Functionalized Vinyl-Based Amphiphilic Polymers: Influence of Phase Segregation on the Enzyme Hydrolytic Activity
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Lipase Immobilization on Differently Functionalized Vinyl-Based Amphiphilic Polymers: Influence of Phase Segregation on the Enzyme Hydrolytic Activity

机译:脂肪酶固定在不同功能的乙烯基两亲聚合物上:相分离对酶水解活性的影响

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Microbial lipase from Candida rugosa was immobilized by physical adsorption onto an ethylene-vinyl alcohol polymer (EVAL) functionalized with acyl chlorides. To evaluate the influence of the reagent chain-length on the amount and activity of immobilized lipase, three differently long aliphatic fatty acids were employed (C8, C12, C18), obtaining EVAL functionalization degrees ranging from 5% to 65%. The enzyme-polymer affinity increased with both the length of the alkyl chain and the matrix hydrophobicity. In particular, the esterified polymers showed a tendency to give segregated hydrophilic and hydrophobic domains. It was observed the formation of an enzyme multilayer at both low and high protein concentrations. Desorption experiments showed that Candida rugosa lipase may be adsorbed in a closed form on the polymer hydrophilic domains and in an open, active structure on the hydrophobic ones.The best results were found for the EVAL-C18 13% matrix that showed hyperactivation with both the soluble and unsoluble substrate after enzyme desorption. In addition, this supported biocatalyst retained its activity for repetitive cycles.
机译:通过物理吸附将皱纹假丝酵母的微生物脂肪酶固定在用酰氯官能化的乙烯-乙烯醇聚合物(EVAL)上。为了评估试剂链长对固定化脂肪酶的数量和活性的影响,使用了三种不同长度的脂族脂肪酸(C8,C12,C18),得到的EVAL官能化度为5%至65%。酶-聚合物的亲和力随烷基链的长度和基质疏水性的增加而增加。特别地,酯化的聚合物表现出给出分离的亲水和疏水结构域的趋势。观察到在低和高蛋白质浓度下均形成酶多层。解吸实验表明,皱纹念珠菌脂肪酶可能​​以封闭形式吸附在聚合物的亲水域上,而以开放的活性结构吸附在疏水域上。对于EVAL-C18 13%的基质,在两种情况下均表现出高活化作用,结果最佳。酶解吸后可溶和不可溶的底物。另外,这种负载的生物催化剂在重复循环中保持了其活性。

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