Covalent binding and in-situ immobilization of lipases on a flexible nanoporous material

被引:20
作者
Ghasemi, Saba [1 ]
Yousefi, Maryam [2 ]
Nikseresht, Ahmad [3 ]
Omidi, Hoda [1 ]
机构
[1] Islamic Azad Univ, Dept Chem, Ilam Branch, Ilam, Iran
[2] ACECR, Avicenna Res Inst, Nanobiotechnol Res Ctr, Tehran, Iran
[3] Payame Noor Univ PNU, Dept Chem, POB 19395-4697, Tehran, Iran
关键词
MIL-53(Fe); Humicola insolens lipase; Rhizomucour miehei lipase; In-situ immobilization; Covalent attachment; METAL-ORGANIC FRAMEWORKS; ENZYME IMMOBILIZATION; KINETIC RESOLUTION; BIOCATALYST; STABILITY; EFFICIENT; MOF; TRYPSIN; SUPPORT; NANOCOMPOSITES;
D O I
10.1016/j.procbio.2020.12.013
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In this study, the flexible nanoporous MIL-53(Fe) (MIL = Materials of Institute Lavoisier) was used as an efficient support for in-situ and covalent binding immobilization of Humicola insolens lipase (HIL) and Rhizomucour miehei lipase (RML). In the covalent attachment procedure, the support synthesized under ultrasound irradiation was functionalized by N,N-dicyclohexylcarbodiimide and then attached to the enzyme. In the case of in-situ immobilization method, the support was easily synthesized in water and at room temperature by just replacing terephthalic acid with disodium terephthalate. The in-situ approach was very efficient in terms of enzyme loading, resulting in the immobilization of 66 mg and 81 mg.g(-1) of RML and HIL, respectively, While in the covalent attachment about 15 mg.g(-1) of enzymes were immobilized. Moreover, pH, thermal stability, and reusability of the prepared biocatalysts were investigated. The in-situ immobilization of H. insolens considerably improved its stability compared with covalent attachment even in extreme conditions of temperature (around 100 % of its initial activity at 80 degrees C) and pH (over 90 % at pH 5 and about 100 % at pH 9) and also allowed the enzyme to be reused up to 7 reaction cycles with more than 90 % residual activity.
引用
收藏
页码:92 / 101
页数:10
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