戊二醛
脂肪酶
生物催化
材料科学
南极洲假丝酵母
硫酸铵
热稳定性
固定化酶
化学工程
可重用性
聚苯乙烯
酯交换
色谱法
酶
催化作用
有机化学
化学
聚合物
离子液体
复合材料
程序设计语言
软件
计算机科学
工程类
冶金
作者
Yanjun Jiang,Lianlian Shi,Yan Huang,Jing Gao,Xu Zhang,Liya Zhou
摘要
With the aim to provide a highly stable and active biocatalyst, cross-linked enzyme aggregates (CLEAs) of lipase Candida sp. 99-125 were prepared in three-dimensionally ordered macroporous silica materials (CLEAs-LP@3DOM-SiO2). Lipase Candida sp. 99-125 was first precipitated in the pores of 3DOM SiO2 (named EAs-LP@3DOM-SiO2), and further cross-linked by glutaraldehyde to form CLEAs-LP@3DOM-SiO2. Saturated ammonium sulfate was used as a precipitant and glutaraldehyde with a concentration of 0.25% (w/w) was employed as a cross-linker. Compared with EAs-LP@3DOM-SiO2 and native lipase, CLEAs-LP@3DOM-SiO2 exhibited excellent thermal and mechanical stability, and could maintain more than 85% of initial activity after 16 days of shaking in organic and aqueous phase. When CLEAs-LP@3DOM-SiO2 was applied in esterification and transesterification reactions, improved activity and reusability were achieved. This method can be used for the immobilization of other enzymes of interest.
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