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固定化菊粉酶-凝集素亲和磁性纳米颗粒用于菊粉水解。

Inulinase Immobilized Lectin Affinity Magnetic Nanoparticles for Inulin Hydrolysis.

机构信息

Chemistry Division, Faculty of Science and Arts, Adnan Menderes University, Aydın, Turkey.

出版信息

Appl Biochem Biotechnol. 2021 May;193(5):1415-1426. doi: 10.1007/s12010-020-03476-7. Epub 2021 Jan 8.

Abstract

In this presented paper, concanavalin A-modified cysteine-functionalized FeO/Ag core/shell magnetic nanoparticles were synthesized and used as a support material for inulinase enzyme, which has been intensively used for the preparation of high-fructose syrup by hydrolyzing inulin. Inulinase adsorption capacity of Con A-functionalized Ag-coated magnetic nanoparticles was optimized by changing medium pH, temperature, and initial inulinase concentration, and maximum inulinase adsorption capacity was found to be 655.32 mg/g nanoparticle by using 1.00 mg/mL of inulinase solution in pH 3.0 buffer system at 25 °C. Finally, efficient inulin degradation capacity of the inulinase immobilized magnetic nanoparticles was demonstrated by TLC studies and released fructose amount was determined as 0.533 mg/mL only within the 5 min of hydrolysis. This newly developed hydrolysis strategy holds considerable promise to produce high-fructose syrup in many industries.

摘要

在本文中,制备了刀豆球蛋白 A 修饰的巯基化半胱氨酸功能化的 FeO/Ag 核/壳磁性纳米粒子,并将其用作菊粉酶的载体材料,菊粉酶被广泛用于通过水解菊粉制备高果糖糖浆。通过改变介质 pH 值、温度和初始菊粉酶浓度,优化了 ConA 功能化的 Ag 涂层磁性纳米粒子对菊粉酶的吸附能力,在 pH 3.0 缓冲体系中,25°C 下使用 1.00mg/mL 的菊粉酶溶液,发现菊粉酶的最大吸附能力为 655.32mg/g 纳米粒子。最后,通过 TLC 研究证明了固定化酶磁性纳米粒子的高效菊粉降解能力,在水解的 5 分钟内仅释放出 0.533mg/mL 的果糖。这种新开发的水解策略有望在许多行业中生产高果糖糖浆。

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