Influence of the Synthesis and Storage Conditions on the Activity of Candida antarctica Lipase B ZIF-8 Biocomposites

南极洲假丝酵母 酯交换 脂肪酶 水解 催化作用 材料科学 固定化酶 有机化学 生物催化 咪唑酯 己烷 化学 反应机理
作者
Natasha K. Maddigan,Oliver M. Linder‐Patton,Paolo Falcaro,Christopher J. Sumby,Stephen Bell,Christian J. Doonan
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:13 (44): 51867-51875 被引量:24
标识
DOI:10.1021/acsami.1c04785
摘要

The biomimetic mineralization of zeolitic imidazolate framework-8 (ZIF-8) has been reported as a strategy for enzyme immobilization, enabling the heterogenization and protection of biomacromolecules. Here, we report the preparation of different Candida antarctica lipase B biocomposites (CALB@ZIF-8) formed by altering the concentrations of Zn2+ and 2-methylimidazole (2-mIM). The influence of synthetic conditions on the catalytic activity of the lipase CALB was examined by hydrolysis and transesterification assays in aqueous and organic media, respectively. We demonstrated that for both reactions, activity was retained for the biocomposites formed at low Zn2+/2-mIM ratios but notably almost entirely lost when the ligand concentration used to form the biocomposites was increased. Additionally, phosphate buffer could regenerate the activity of larger particles by degrading the crystal surfaces and releasing encapsulated CALB into solution. Transesterification reactions using CALB@ZIF-8 biocomposites were undertaken in 100% hexane, giving rise to enhanced CALB activity relative to the free enzyme. These observations highlight the fundamental importance of synthetic protocols and operating parameters for developing enzyme@MOF biocomposites with improved activity in challenging conditions.

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