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Immobilization of Naringinase from Aspergillus Niger on a Magnetic Polysaccharide Carrier

机译:黑曲霉的柚皮苷酶在磁性多糖载体上的固定化

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摘要

Naringinase is an enzymatic complex used in the deglycosylation of compounds with a high application potential in the food and pharmaceutical industries. The aim of the study was to immobilize naringinase from KMS on a magnetic carrier obtained on the basis of carob gum activated by polyethyleneimine. Response surface methodology was used to optimize naringinase immobilization taking into account the following factors: pH, immobilization time, initial concentration of naringinase and immobilization temperature. The adsorption of the enzyme on a magnetic carrier was a reversible process. The binding force of naringinase was increased by crosslinking the enzyme with the carrier using dextran aldehyde. The crosslinked enzyme had better stability in an acidic environment and at a higher temperature compared to the free form. The immobilization and stabilization of naringinase by dextran aldehyde on the magnetic polysaccharide carrier lowered the activation energy, thus increasing the catalytic capacity of the investigated enzyme and increasing the activation energy of the thermal deactivation process, which confirms higher stability of the immobilized enzyme in comparison with free naringinase. The preparation of crosslinked naringinase retained over 80% of its initial activity after 10 runs of naringin hydrolysis from fresh and model grapefruit juice.
机译:柚皮苷酶是一种酶复合物,用于化合物的去糖基化,在食品和制药工业中具有很高的应用潜力。该研究的目的是将来自KMS的柚皮苷酶固定在基于聚乙烯亚胺活化的角豆胶获得的磁性载体上。考虑到以下因素,使用响应表面方法优化了柚皮苷酶的固定化:pH,固定化时间,柚皮苷酶的初始浓度和固定化温度。酶在磁性载体上的吸附是可逆的过程。柚皮苷酶的结合力通过使用葡聚糖醛将酶与载体交联而增加。与游离形式相比,该交联酶在酸性环境和较高温度下具有更好的稳定性。葡聚糖在磁性多糖载体上固定和稳定柚皮苷酶降低了活化能,从而提高了所研究酶的催化能力并增加了热失活过程的活化能,这证实了固定化酶的稳定性高于免费的naringinase。从新鲜葡萄柚汁和模型葡萄柚汁中水解10遍柚皮苷后,交联柚皮苷酶的制备保留了其初始活性的80%以上。

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