Preparation of Magnetic Silica Nanoparticles and Their Application in Laccase Immobilization
Huizhou Liu
Abstract
Huizhou Liu
Abstract
Laccase was immobilized on the silanized magnetic silica nanoparticles by using glutaradehyde as the cross-linker. Immobilization of laccase was investigated and its immobilizing conditions were optimized. The results were achieved with the concentration of 8% glutaradehyde, immobilizing time of 6 h, the buffer of pH 7.0 and initial laccase concentration of 0.15 g/L. The optimum pH and temperature of immobilized laccase were 4.0 and 20℃, respectively. After the immobilized enzyme was kept at 60℃ for 4 h, it remained 60.9% of its initial activity. The immobilized laccase could retain above 55% of activity after 10 consecutive operations. The experimental results showed that the thermal stability and operational stability of immobilized laccase were improved in comparison with free laccase.
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Laccase was immobilized on the silanized magnetic silica nanoparticles by using glutaradehyde as the cross-linker. Immobilization of laccase was investigated and its immobilizing conditions were optimized. The results were achieved with the concentration of 8% glutaradehyde, immobilizing time of 6 h, the buffer of pH 7.0 and initial laccase concentration of 0.15 g/L. The optimum pH and temperature of immobilized laccase were 4.0 and 20℃, respectively. After the immobilized enzyme was kept at 60℃ for 4 h, it remained 60.9% of its initial activity. The immobilized laccase could retain above 55% of activity after 10 consecutive operations. The experimental results showed that the thermal stability and operational stability of immobilized laccase were improved in comparison with free laccase.
Key concepts: Laccase, Immobilized enzyme, Chemistry, Thermal stability, Nanoparticle, Chromatography, Magnetic nanoparticles, Nuclear chemistry