All-enzyme hydrogels are biocatalytic materials, with which various enzymes can be immobilized in microreactors in a simple, mild, and efficient manner to be used for continuous flow processes. Here we present the construction and application of a cofactor regenerating hydrogel based on the imine reductase GF3546 from Streptomyces sp. combined with the cofactor regenerating glucose-1-dehydrogenase from Bacillus subtilis. The resulting hydrogel materials were characterized in terms of binding kinetics and viscoelastic properties. The materials were formed by rapid covalent crosslinking in less than 5 min, and they showed a typical mesh size of 67 ± 2 nm. The gels were applied for continuous flow biocatalysis. In a microfluidic reactor setup,...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Lic...
Free enzymes often face economic problems due to their non-recyclability, which limits their applica...
All-enzyme hydrogels are efficient reagents for continuous flow biocatalysis. These materials can be...
The development of process steps catalyzed by immobilized enzymes usually encompasses the screening ...
Maximizing space–time yields (STY) of biocatalytic flow processes is essential for the establishment...
The fundamental principle of biological compartmentalisation of cellular life provides the basis for...
A microbioreactor was developed in which selected amine transaminase was immobilized together with t...
A microbioreactor was developed in which selected amine transaminase was immobilized together with t...
The immobilization of biocatalysts in a continuous fluidic setup is one way to achieve compartmental...
The industrial implementation of whole-cells and enzymes in flow biocatalysis microreactors is essen...
The utilization of continuous-flow biochemical reactors, including biocatalysis, biotransformation, ...
All-enzyme hydrogel (AEH) particles with a hydrodynamic diameter of up to 120 nm were produced intra...
Enzymes are nature's catalysts and have great potential for sustainable processes from renewable res...
The immobilization of enzymes into polymer hydrogels is a versatile approach to improve their stabil...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Lic...
Free enzymes often face economic problems due to their non-recyclability, which limits their applica...
All-enzyme hydrogels are efficient reagents for continuous flow biocatalysis. These materials can be...
The development of process steps catalyzed by immobilized enzymes usually encompasses the screening ...
Maximizing space–time yields (STY) of biocatalytic flow processes is essential for the establishment...
The fundamental principle of biological compartmentalisation of cellular life provides the basis for...
A microbioreactor was developed in which selected amine transaminase was immobilized together with t...
A microbioreactor was developed in which selected amine transaminase was immobilized together with t...
The immobilization of biocatalysts in a continuous fluidic setup is one way to achieve compartmental...
The industrial implementation of whole-cells and enzymes in flow biocatalysis microreactors is essen...
The utilization of continuous-flow biochemical reactors, including biocatalysis, biotransformation, ...
All-enzyme hydrogel (AEH) particles with a hydrodynamic diameter of up to 120 nm were produced intra...
Enzymes are nature's catalysts and have great potential for sustainable processes from renewable res...
The immobilization of enzymes into polymer hydrogels is a versatile approach to improve their stabil...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Lic...
Free enzymes often face economic problems due to their non-recyclability, which limits their applica...