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改性硅酸盐和碳纳米管用于固定米根霉脂肪酶:载体和固定化技术对固定化生物催化剂催化性能的影响。

Modified silicates and carbon nanotubes for immobilization of lipase from Rhizomucor miehei: Effect of support and immobilization technique on the catalytic performance of the immobilized biocatalysts.

机构信息

Cukurova University, Imamoglu Vocational School, Adana, Turkey.

Cukurova University, Sciences & Letters Faculty, Chemistry Department, 01330, Adana, Turkey.

出版信息

Enzyme Microb Technol. 2021 Mar;144:109739. doi: 10.1016/j.enzmictec.2020.109739. Epub 2020 Dec 29.

Abstract

Lipase from Rhizomucor miehei (RML) was covalently immobilized on different supports, two silica gels and two carbon nanotube samples, using two different strategies. RML was immobilized on 3-carboxypropyl silica gel (RML@Si-COOH) and multi-wall carbon nanotubes containing carboxylic acid functionalities (RML@MCNT-COOH) using a two-step carbodiimide activation/immobilization reaction. Moreover, the enzyme was also immobilized on 3-aminopropyl silica (RML@Si-Glu) and single-wall carbon nanotubes functionalized with 3-APTES and activated with glutaraldehyde (RML@SCNT-Glu). Before and after RML immobilization, the structurel properties of supports were characterized and compared in detail. After immobilization, the expressed activities were 36.9, 90.2, 16.9, and 26.1 % for RML@Si-COOH, RML@Si-Glu, RML@MCNT-COOH, and RML@SCNT-Glu, respectively. The kinetic parameters of free and immobilized RML samples were determined for three substrates, p-nitrophenyl acetate, p-nitrophenyl butyrate and p-nitrophenyl palmitate, and RML@Si-Glu showed higher catalytic efficiency than the other immobilized RML samples. RML@Si-COOH, RML@Si-Glu, RML@MCNT-COOH, and RML@SCNT-Glu exhibited 5.8, 7.6, 4.2 and 4.6 folds longer half-life values than those of the free enzyme at pH 7.5 and 40 °C. Recyclability studies showed that all the immobilized RML biocatalysts retained over 90 % of their initial activities after ten cycles in the hydrolysis of p-nitrophenyl butyrate.

摘要

里氏木霉脂肪酶(RML)通过两种不同的策略共价固定在两种不同的载体上,两种硅胶和两种碳纳米管样品。通过两步碳化二亚胺活化/固定化反应,将 RML 固定在 3-羧丙基硅胶(RML@Si-COOH)和含有羧酸官能团的多壁碳纳米管(RML@MCNT-COOH)上。此外,该酶还固定在 3-氨丙基硅胶(RML@Si-Glu)和经 3-APTES 功能化并用戊二醛活化的单壁碳纳米管(RML@SCNT-Glu)上。在固定化前后,详细比较和表征了载体的结构特性。固定化后,RML@Si-COOH、RML@Si-Glu、RML@MCNT-COOH 和 RML@SCNT-Glu 的表达活性分别为 36.9%、90.2%、16.9%和 26.1%。测定了三种底物对游离和固定化 RML 样品的动力学参数,即对硝基苯乙酸酯、对硝基苯丁酸酯和对硝基苯棕榈酸酯,结果表明 RML@Si-Glu 比其他固定化 RML 样品具有更高的催化效率。RML@Si-COOH、RML@Si-Glu、RML@MCNT-COOH 和 RML@SCNT-Glu 在 pH 7.5 和 40°C 时的半衰期值分别比游离酶长 5.8、7.6、4.2 和 4.6 倍。循环使用研究表明,在 pH 7.5 和 40°C 下,所有固定化 RML 生物催化剂在水解对硝基苯丁酸酯的十个循环后,仍保留初始活性的 90%以上。

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