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Amino-modified kraft lignin microspheres as a support for enzyme immobilization.


ABSTRACT: In this research, it has been demonstrated that amino-modified microspheres (A-LMS) based on bio-waste derived material, such as kraft lignin, have good prospects in usage as a support for enzyme immobilization, since active biocatalyst systems were prepared by immobilizing β-galactosidase from A. oryzae and laccase from M. thermophila expressed in A. oryzae (Novozym® 51003) onto A-LMS. Two types of A-LMS were investigated, with different emulsifier concentrations (5 wt% and 10 wt%), and microspheres produced using 5 wt% of emulsifier (A-LMS_5) showed adequate pore shape, size and distribution for enzyme attachment. The type of interactions formed between enzymes (β-galactosidase and laccase) and A-LMS_5 microspheres demonstrated that β-galactosidase is predominantly attached via electrostatic interactions while attachment of laccase is equally governed by electrostatic and hydrophobic interactions. Furthermore, the A-LMS_5-β-galactosidase exhibited specificity towards recognized prebiotics (galacto-oligosaccharides (GOS)) synthesis with 1.5-times higher GOS production than glucose production, while for environmental pollutant lindane degradation, the immobilized laccase preparation exhibited high activity with a minimum remaining lindane concentration of 22.4% after 6 days. Thus, this novel enzyme immobilization support A-LMS_5 has potential for use in green biotechnologies.

SUBMITTER: Bebic J 

PROVIDER: S-EPMC9054402 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Amino-modified kraft lignin microspheres as a support for enzyme immobilization.

Bebić Jelena J   Banjanac Katarina K   Rusmirović Jelena J   Ćorović Marija M   Milivojević Ana A   Simović Milica M   Marinković Aleksandar A   Bezbradica Dejan D  

RSC advances 20200604 36


In this research, it has been demonstrated that amino-modified microspheres (A-LMS) based on bio-waste derived material, such as kraft lignin, have good prospects in usage as a support for enzyme immobilization, since active biocatalyst systems were prepared by immobilizing β-galactosidase from <i>A. oryzae</i> and laccase from <i>M. thermophila</i> expressed in <i>A. oryzae</i> (Novozym® 51003) onto A-LMS. Two types of A-LMS were investigated, with different emulsifier concentrations (5 wt% and  ...[more]

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