Employment of enzymes as biocatalysts offers immense benefits across diverse sectors in the context of green chemistry, biodegradability, and sustainability. When compared to free enzymes in solution, enzyme immobilization proposes an effective means of improving functional efficiency and operational stability. The advance of printable and functional materials utilized in additive manufacturing, coupled with the capability to produce bespoke geometries, has sparked great interest toward the 3-dimensional (3D) printing of immobilized enzymes. Printable biocatalysts represent a new generation of enzyme immobilization in a more customizable and adaptable manner, unleashing their potential functionalities for countless applications in industria...
Background3D printing is revolutioning many industrial sectors and has the potential to enhance also...
In continuous flow biocatalysis, chemical transformations can occur under milder, greener, more scal...
In this tutorial review, an overview of the why, what and how of enzyme immobilisation for use in bi...
The development of process steps catalyzed by immobilized enzymes usually encompasses the screening ...
Enzymes as industrial biocatalysts offer numerous advantages over traditional chemical processes wit...
The immobilization of enzymes in biocatalytic flow reactors is a common strategy to increase enzyme ...
A method to efficiently immobilize enzymes on 3D printed continuous-flow devices is presented. Appli...
Recent advances in biotechnology and bioengineering have shown an increasing trend towards the devel...
The use of enzymes as biological catalysts has gained increasing importance in industries. Although ...
Protocols for simple immobilization of unstable enzymes are plenty, but the vast majority of them, u...
The need for cost-effectively produced and improved biocatalysts for industrial, pharmaceutical and ...
In industry, enzymes are often immobilized to generate more stable enzyme preparations that are easi...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
Enzymes have been increasingly used as sustainable biocatalysts for a broad range of applications ra...
With the increasing demands of world biotechnology industries there is a need to enhance the product...
Background3D printing is revolutioning many industrial sectors and has the potential to enhance also...
In continuous flow biocatalysis, chemical transformations can occur under milder, greener, more scal...
In this tutorial review, an overview of the why, what and how of enzyme immobilisation for use in bi...
The development of process steps catalyzed by immobilized enzymes usually encompasses the screening ...
Enzymes as industrial biocatalysts offer numerous advantages over traditional chemical processes wit...
The immobilization of enzymes in biocatalytic flow reactors is a common strategy to increase enzyme ...
A method to efficiently immobilize enzymes on 3D printed continuous-flow devices is presented. Appli...
Recent advances in biotechnology and bioengineering have shown an increasing trend towards the devel...
The use of enzymes as biological catalysts has gained increasing importance in industries. Although ...
Protocols for simple immobilization of unstable enzymes are plenty, but the vast majority of them, u...
The need for cost-effectively produced and improved biocatalysts for industrial, pharmaceutical and ...
In industry, enzymes are often immobilized to generate more stable enzyme preparations that are easi...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
Enzymes have been increasingly used as sustainable biocatalysts for a broad range of applications ra...
With the increasing demands of world biotechnology industries there is a need to enhance the product...
Background3D printing is revolutioning many industrial sectors and has the potential to enhance also...
In continuous flow biocatalysis, chemical transformations can occur under milder, greener, more scal...
In this tutorial review, an overview of the why, what and how of enzyme immobilisation for use in bi...