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VOBĚRKOVÁ, S. SOLČÁNY, V. VRŠANSKÁ, M. ADAM, V.
Original Title
Immobilization of ligninolytic enzymes from white-rot fungi in cross-linked aggregates
Type
journal article in Web of Science
Language
English
Original Abstract
Ligninolytic enzymes from white-rot fungi are widely used in biotechnological processes. However, the application of these enzymes as free enzymes is limited due to their instability and lack of reusability. Enzyme stabilization is therefore a major challenge in biocatalytic process research, and immobilization methods are desirable. Using cross-linked enzyme aggregates (CLEAs) such as magnetic CLEAs, porous-CLEAs and combi-CLEAs is a promising technique for overcoming these issues. Cross-linking methods can stabilize and immobilize enzymes by interconnecting enzyme molecules via multiple bonds using cross linking agents such as glutaraldehyde. The high catalyst density and microporous assembly of CLEAs guarantee high catalyst activity, which, together with their long shelf life, operational stability, and reusability, provide a cost-efficient alternative to matrix-assisted immobilization approaches. Here, we review current progress in ligninolytic enzyme immobilization and provide a comprehensive review of CLEAs. Moreover, we summarize the use of these CLEAs for biocatalysis processes, bioremediation such as dye decolourization, wastewater treatment or pharmaceutically active compound elimination.
Keywords
White-rot fungi; Ligninolytic enzymes; Cross-linked enzyme aggregates; Immobilization
Authors
VOBĚRKOVÁ, S.; SOLČÁNY, V.; VRŠANSKÁ, M.; ADAM, V.
Released
1. 7. 2018
ISBN
0045-6535
Periodical
CHEMOSPHERE
Year of study
202
Number
1
State
United Kingdom of Great Britain and Northern Ireland
Pages from
694
Pages to
707
Pages count
14
BibTex
@article{BUT147398, author="Stanislava {Voběrková} and Veronika {Solčány} and Martina {Vršanská} and Vojtěch {Adam}", title="Immobilization of ligninolytic enzymes from white-rot fungi in cross-linked aggregates", journal="CHEMOSPHERE", year="2018", volume="202", number="1", pages="694--707", doi="10.1016/j.chemosphere.2018.03.088", issn="0045-6535" }