Cellulases are a important family of hydrolytic enzymes which catalyze the bond of cellulose and other related cello-oligosaccharide derivates. Industrial applications require enzymes highly stable and economically viable in terms of reusability. These costs can be reduced by immobilizing the cellulases, offering a potential solution through enzyme recycling and easy recovery. The covalent immobilization of enzymes is reported here: one is commercial cellulase from Aspergillus Niger and other one is recombinant enzyme, named CelStrep it because was isolated from a new cellulolytic strain, Streptomyces sp. G12,. The optimal pH for binding is 4.6 for both cellulases and the optimal enzyme concentrations are 1 mg/mL and 5 mg/mL respectively....
A new strategy employing molecular genetic techniques to produce fusion polypeptides was used for e...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Nanostructured materials along with an added value of polymers-based support carriers have gained hi...
Cellulases are a important family of hydrolytic enzymes which catalyze the bond of cellulose and o...
Cellulosic ethanol is an alternative renewable energy source. Cellulase used in the production of ce...
The immobilization of cellulases could be an economical alternative for cost reduction of enzyme app...
To prepare a smart biocatalyst, cellulase was immobilized on the reversibly soluble matrix Eudragit ...
Current cellulosic biomass hydrolysis is based on the one-time use of cellulases. Cellulases immobil...
Catalytic materials obtained by enzyme immobilization have multiple potential applications in the fo...
Biocatalyst consisting of immobilized cellulases for hydrolysis of pretreated sugarcane bagasse by o...
Abstract The potential of cellulolytic enzymes has been widely studied and explored for bioconversio...
On a near future, bio-based economy will assume a key role in our lives. Lignocellulosic materials (...
A cellulase from Trichoderma reesei was immobilized on Eudragit L-100, a reversibly soluble polymer ...
AbstractThe bioconversion of lignocellulosic biomass to fermentable sugars for production of ethanol...
Lignocellulosic residues have been receiving growing interest as a promising source of polysaccharid...
A new strategy employing molecular genetic techniques to produce fusion polypeptides was used for e...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Nanostructured materials along with an added value of polymers-based support carriers have gained hi...
Cellulases are a important family of hydrolytic enzymes which catalyze the bond of cellulose and o...
Cellulosic ethanol is an alternative renewable energy source. Cellulase used in the production of ce...
The immobilization of cellulases could be an economical alternative for cost reduction of enzyme app...
To prepare a smart biocatalyst, cellulase was immobilized on the reversibly soluble matrix Eudragit ...
Current cellulosic biomass hydrolysis is based on the one-time use of cellulases. Cellulases immobil...
Catalytic materials obtained by enzyme immobilization have multiple potential applications in the fo...
Biocatalyst consisting of immobilized cellulases for hydrolysis of pretreated sugarcane bagasse by o...
Abstract The potential of cellulolytic enzymes has been widely studied and explored for bioconversio...
On a near future, bio-based economy will assume a key role in our lives. Lignocellulosic materials (...
A cellulase from Trichoderma reesei was immobilized on Eudragit L-100, a reversibly soluble polymer ...
AbstractThe bioconversion of lignocellulosic biomass to fermentable sugars for production of ethanol...
Lignocellulosic residues have been receiving growing interest as a promising source of polysaccharid...
A new strategy employing molecular genetic techniques to produce fusion polypeptides was used for e...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Nanostructured materials along with an added value of polymers-based support carriers have gained hi...