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固定化脂肪酶在 O-戊炔基葡聚糖上的稳定性。

Stability of lipase immobilized on O-pentynyl dextran.

机构信息

Technische Universität Braunschweig, Institut für Lebensmittelchemie, Braunschweig, Germany.

出版信息

Bioprocess Biosyst Eng. 2012 May;35(4):535-44. doi: 10.1007/s00449-011-0626-8. Epub 2011 Sep 20.

Abstract

O-Pentynyl dextran (PyD), an amphiphilic polysaccharide derivative with a degree of substitution (DS) of 0.43 was compared with ion exchange resins Lewatit VP OC 1600, Amberlite XAD 761 and Duolite A568 for immobilization of Lipase from Rhizopus arrhizus by adsorption method. The immobilized enzymes were employed for esterification of octanoic acid with geraniol in n-hexane as model reaction. PyD showed higher lipase adsorption and with 249 μmol min(-1) g(-1) significant higher esterification activity than the other supports (67-83 μmol min(-1) g(-1)). Biocatalysts from all types of supports except PyD became completely inactive within 8 weeks storing at -10 °C while lipase immobilized on PyD retained its full esterification activity for at least 14 weeks. In repeated use, yield decreased rapidly after two cycles for all supports except for PyD. For this biopolymeric support, constantly 90% yield was achieved even after eight cycles, when the biocatalyst was washed with n-hexane and water and then freeze-dried. To achieve this yield, prolonged reaction times were required, partly on the account of an increasing delay period, probably to adapt active conformation, until the reaction starts.

摘要

O-戊基葡聚糖(PyD)是一种具有取代度(DS)为 0.43 的两亲多糖衍生物,与离子交换树脂 Lewatit VP OC 1600、Amberlite XAD 761 和 Duolite A568 相比,通过吸附法用于固定 Rhizopus arrhizus 的脂肪酶。将固定化酶用于辛酸与香叶醇在正己烷中的酯化反应作为模型反应。与其他载体(67-83 μmol min(-1) g(-1))相比,PyD 显示出更高的脂肪酶吸附能力和 249 μmol min(-1) g(-1)的显著更高酯化活性。除 PyD 外,所有类型载体上的生物催化剂在-10°C 下储存 8 周内完全失活,而固定在 PyD 上的脂肪酶保持其完整的酯化活性至少 14 周。在重复使用中,除 PyD 外,所有载体的产率在两个循环后迅速下降。对于这种生物聚合物载体,即使在经过八个循环后,当用正己烷和水洗涤然后冷冻干燥时,仍能达到 90%的恒定产率。为了达到这个产率,需要延长反应时间,部分原因是延迟期的延长,可能是为了适应活性构象,直到反应开始。

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