In recent years, enzyme immobilization has been presented as a powerful tool for the improvement of enzyme properties such as stability and reusability. However, the type of support material used plays a crucial role in the immobilization process due to the strong effect of these materials on the properties of the produced catalytic system. A large variety of inorganic and organic as well as hybrid and composite materials may be used as stable and efficient supports for biocatalysts. This review provides a general overview of the characteristics and properties of the materials applied for enzyme immobilization. For the purposes of this literature study, support materials are divided into two main groups, called Classic and New materials. Th...
The main objective of the immobilization of enzymes is to enhance the economics of biocatalytic proc...
Several inorganic materials are potentially suitable for enzymatic covalent immobilization, by means...
Enzyme immobilization has become a key strategy to improve the stability and recycling of biocatalys...
With the increasing demands of world biotechnology industries there is a need to enhance the product...
Strategies based on the enzyme application are increasingly replacing the conventional chemical proc...
Enzymes are outstanding biocatalysts for catalyzing reactions under mild conditions, with versatile ...
Biocatalysts (enzymes and whole cells) catalyze reactions with the advantage of superior chemo-, reg...
The primary means of immobilizing enzymes are to boost the enzyme productivity and operational stabi...
A variety of organic nanomaterials and organic polymers are used for enzyme immobilization to increa...
In this tutorial review, an overview of the why, what and how of enzyme immobilisation for use in bi...
Protocols for simple immobilization of unstable enzymes are plenty, but the vast majority of them, u...
Immobilization and purification of enzymes are usual requirements for their industrial use. Both pur...
This work was focused to study the immobilization of enzymes on polymers. A large range of polymer m...
Reports on chemical immobilization of proteins and enzymes first appeared in the 1960s. Since then, ...
Abstract The current demands of the world’s biotechno-logical industries are enhancement in enzyme p...
The main objective of the immobilization of enzymes is to enhance the economics of biocatalytic proc...
Several inorganic materials are potentially suitable for enzymatic covalent immobilization, by means...
Enzyme immobilization has become a key strategy to improve the stability and recycling of biocatalys...
With the increasing demands of world biotechnology industries there is a need to enhance the product...
Strategies based on the enzyme application are increasingly replacing the conventional chemical proc...
Enzymes are outstanding biocatalysts for catalyzing reactions under mild conditions, with versatile ...
Biocatalysts (enzymes and whole cells) catalyze reactions with the advantage of superior chemo-, reg...
The primary means of immobilizing enzymes are to boost the enzyme productivity and operational stabi...
A variety of organic nanomaterials and organic polymers are used for enzyme immobilization to increa...
In this tutorial review, an overview of the why, what and how of enzyme immobilisation for use in bi...
Protocols for simple immobilization of unstable enzymes are plenty, but the vast majority of them, u...
Immobilization and purification of enzymes are usual requirements for their industrial use. Both pur...
This work was focused to study the immobilization of enzymes on polymers. A large range of polymer m...
Reports on chemical immobilization of proteins and enzymes first appeared in the 1960s. Since then, ...
Abstract The current demands of the world’s biotechno-logical industries are enhancement in enzyme p...
The main objective of the immobilization of enzymes is to enhance the economics of biocatalytic proc...
Several inorganic materials are potentially suitable for enzymatic covalent immobilization, by means...
Enzyme immobilization has become a key strategy to improve the stability and recycling of biocatalys...