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海藻酸钠与戊二醛活化壳聚糖微球共固定化酶的优化

Optimization of Enzyme Co-Immobilization with Sodium Alginate and Glutaraldehyde-Activated Chitosan Beads.

作者信息

Gür Sinem Diken, İdil Neslihan, Aksöz Nilüfer

机构信息

Faculty of Science, Department of Biology (Biotechnology), Hacettepe University, Beytepe, Ankara, Turkey.

出版信息

Appl Biochem Biotechnol. 2018 Feb;184(2):538-552. doi: 10.1007/s12010-017-2566-5. Epub 2017 Jul 31.

Abstract

In this study, two different materials-alginate and glutaraldehyde-activated chitosan beads-were used for the co-immobilization of α-amylase, protease, and pectinase. Firstly, optimization of multienzyme immobilization with Na alginate beads was carried out. Optimum Na alginate and CaCl concentration were found to be 2.5% and 0.1 M, respectively, and optimal enzyme loading ratio was determined as 2:1:0.02 for pectinase, protease, and α-amylase, respectively. Next, the immobilization of multiple enzymes on glutaraldehyde-activated chitosan beads was optimized (3% chitosan concentration, 0.25% glutaraldehyde with 3 h of activation and 3 h of coupling time). While co-immobilization was successfully performed with both materials, the specific activities of enzymes were found to be higher for the enzymes co-immobilized with glutaraldehyde-activated chitosan beads. In this process, glutaraldehyde was acting as a spacer arm. SEM and FTIR were used for the characterization of activated chitosan beads. Moreover, pectinase and α-amylase enzymes immobilized with chitosan beads were also found to have higher activity than their free forms. Three different enzymes were co-immobilized with these two materials for the first time in this study.

摘要

在本研究中,两种不同的材料——海藻酸钠和戊二醛活化的壳聚糖珠——被用于α-淀粉酶、蛋白酶和果胶酶的共固定化。首先,对用海藻酸钠珠进行多酶固定化进行了优化。发现最佳海藻酸钠和氯化钙浓度分别为2.5%和0.1 M,果胶酶、蛋白酶和α-淀粉酶的最佳酶负载比分别确定为2:1:0.02。接下来,对在戊二醛活化的壳聚糖珠上固定多种酶进行了优化(壳聚糖浓度为3%,戊二醛为0.25%,活化3小时,偶联时间3小时)。虽然两种材料都成功进行了共固定化,但发现与戊二醛活化的壳聚糖珠共固定化的酶的比活性更高。在此过程中,戊二醛充当间隔臂。扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)用于活化壳聚糖珠的表征。此外,用壳聚糖珠固定的果胶酶和α-淀粉酶也比它们的游离形式具有更高的活性。在本研究中,首次用这两种材料共固定化了三种不同的酶。

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