This paper investigates β-glucosidase immobilization onto mesoporous silica support by physical adsorption and covalent binding. The immobilization was carried out onto micro-size silica aggregates with the average pore size of 29 nm. During physical adsorption the highest yield of immobilized β-glucosidase was obtained at initial protein concentration of 0.9 mg ml-1. Addition of NaCl increased 1.7-fold, while Triton X-100 addition decreased 6-fold yield of adsorption in comparison to the one obtained without any addition. Covalently bonded β-glucosidase, via glutaraldehyde previously bonded to silanized silica, had higher yield of immobilized enzyme as well as higher activity and substrate affinity in comparison ...
β-Glucosidase is part of the cellulases and is responsible for degrading cellobiose into glucose, a ...
Several inorganic materials are potentially suitable for enzymatic covalent immobilization, by means...
peer-reviewedEnzymes often display high regio- and chemoselectivity and therefore are of great inte...
Abstractβ-Glucosidase (BG) was immobilized by adsorption on wrinkled silica nanoparticles (WSNs) and...
: β-Glucosidase (BG) catalyzes the hydrolysis of cellobiose to glucose, a substrate for fermentation...
Fungal cellulases generally contain a reduced amount of β-glucosidase (BG), which does not allow for...
peer-reviewedThe biocatalysis field demands ‘universal’ supports able to encapsulate enzymes with a ...
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
Bioconversion of lignocellulosic biomass to biofuels through enzymatic hydrolysis has become a promi...
beta-Glucuronidases are a class of enzymes that catalyze the breakdown of complex carbohydrates. The...
Background: \u3b2-Glucosidase is known as an effective catalyst for the hydrolysis of various glycos...
β-Glucosidase (BG) catalyzes the hydrolysis of cellobiose to glucose, a substrate for fermentation t...
Ordered mesoporous silica, with high porosity was used to immobilize glucoamylase via adsorption and...
In order to develop the optimal strategy and to deepen the knowledge in the field of enzyme immobili...
β-Glucosidase from Aspergillus niger was immobilized on sponge by covalent binding through a spacer ...
β-Glucosidase is part of the cellulases and is responsible for degrading cellobiose into glucose, a ...
Several inorganic materials are potentially suitable for enzymatic covalent immobilization, by means...
peer-reviewedEnzymes often display high regio- and chemoselectivity and therefore are of great inte...
Abstractβ-Glucosidase (BG) was immobilized by adsorption on wrinkled silica nanoparticles (WSNs) and...
: β-Glucosidase (BG) catalyzes the hydrolysis of cellobiose to glucose, a substrate for fermentation...
Fungal cellulases generally contain a reduced amount of β-glucosidase (BG), which does not allow for...
peer-reviewedThe biocatalysis field demands ‘universal’ supports able to encapsulate enzymes with a ...
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
Bioconversion of lignocellulosic biomass to biofuels through enzymatic hydrolysis has become a promi...
beta-Glucuronidases are a class of enzymes that catalyze the breakdown of complex carbohydrates. The...
Background: \u3b2-Glucosidase is known as an effective catalyst for the hydrolysis of various glycos...
β-Glucosidase (BG) catalyzes the hydrolysis of cellobiose to glucose, a substrate for fermentation t...
Ordered mesoporous silica, with high porosity was used to immobilize glucoamylase via adsorption and...
In order to develop the optimal strategy and to deepen the knowledge in the field of enzyme immobili...
β-Glucosidase from Aspergillus niger was immobilized on sponge by covalent binding through a spacer ...
β-Glucosidase is part of the cellulases and is responsible for degrading cellobiose into glucose, a ...
Several inorganic materials are potentially suitable for enzymatic covalent immobilization, by means...
peer-reviewedEnzymes often display high regio- and chemoselectivity and therefore are of great inte...