Immobilized cellulase: Interactions between cellulase and nanostructured supports

In this review, we will analyze the main aspects of immobilization of cellulase - an enzyme for processing cellulosic biomass waste - on nanostructured supports. Such substrates provide a large surface area, increased enzymatic load and a favorable environment for increasing the efficiency of cellul...

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Main Authors: Sulman Aleksanrina, Grebennikova Olga, Tikhonov Boris, Molchanov Vladimir, Matveeva Valentina
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:BIO Web of Conferences
Online Access:https://www.bio-conferences.org/articles/bioconf/pdf/2023/09/bioconf_abt2023_01016.pdf
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author Sulman Aleksanrina
Grebennikova Olga
Tikhonov Boris
Molchanov Vladimir
Matveeva Valentina
author_facet Sulman Aleksanrina
Grebennikova Olga
Tikhonov Boris
Molchanov Vladimir
Matveeva Valentina
author_sort Sulman Aleksanrina
collection DOAJ
description In this review, we will analyze the main aspects of immobilization of cellulase - an enzyme for processing cellulosic biomass waste - on nanostructured supports. Such substrates provide a large surface area, increased enzymatic load and a favorable environment for increasing the efficiency of cellulase and its stability, which leads to the creation of nanobiocatalysts for the production of biofuels and chemicals with added value. Here we will discuss nanostructured supports, methods of cellulase immobilization, the interaction between the enzyme and the support, as well as factors affecting the activity of the enzyme to achieve maximum conversion of cellulose biowaste into fermentable sugars.
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spelling doaj.art-2ef0c8d708f943a596c6e6b4c2bd51f92023-08-02T13:13:49ZengEDP SciencesBIO Web of Conferences2117-44582023-01-01640101610.1051/bioconf/20236401016bioconf_abt2023_01016Immobilized cellulase: Interactions between cellulase and nanostructured supportsSulman Aleksanrina0Grebennikova Olga1Tikhonov Boris2Molchanov Vladimir3Matveeva Valentina4Tver State Technical UniversityTver State Technical UniversityTver State Technical UniversityTver State Technical UniversityTver State Technical UniversityIn this review, we will analyze the main aspects of immobilization of cellulase - an enzyme for processing cellulosic biomass waste - on nanostructured supports. Such substrates provide a large surface area, increased enzymatic load and a favorable environment for increasing the efficiency of cellulase and its stability, which leads to the creation of nanobiocatalysts for the production of biofuels and chemicals with added value. Here we will discuss nanostructured supports, methods of cellulase immobilization, the interaction between the enzyme and the support, as well as factors affecting the activity of the enzyme to achieve maximum conversion of cellulose biowaste into fermentable sugars.https://www.bio-conferences.org/articles/bioconf/pdf/2023/09/bioconf_abt2023_01016.pdf
spellingShingle Sulman Aleksanrina
Grebennikova Olga
Tikhonov Boris
Molchanov Vladimir
Matveeva Valentina
Immobilized cellulase: Interactions between cellulase and nanostructured supports
BIO Web of Conferences
title Immobilized cellulase: Interactions between cellulase and nanostructured supports
title_full Immobilized cellulase: Interactions between cellulase and nanostructured supports
title_fullStr Immobilized cellulase: Interactions between cellulase and nanostructured supports
title_full_unstemmed Immobilized cellulase: Interactions between cellulase and nanostructured supports
title_short Immobilized cellulase: Interactions between cellulase and nanostructured supports
title_sort immobilized cellulase interactions between cellulase and nanostructured supports
url https://www.bio-conferences.org/articles/bioconf/pdf/2023/09/bioconf_abt2023_01016.pdf
work_keys_str_mv AT sulmanaleksanrina immobilizedcellulaseinteractionsbetweencellulaseandnanostructuredsupports
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AT tikhonovboris immobilizedcellulaseinteractionsbetweencellulaseandnanostructuredsupports
AT molchanovvladimir immobilizedcellulaseinteractionsbetweencellulaseandnanostructuredsupports
AT matveevavalentina immobilizedcellulaseinteractionsbetweencellulaseandnanostructuredsupports