Maximizing space–time yields (STY) of biocatalytic flow processes is essential for the establishment of a circular biobased economy. We present a comparative study in which different biocatalytic flow reactor concepts were tested with the same enzyme, the (R)-selective alcohol dehydrogenase from Lactobacillus brevis (LbADH), that was used for stereoselective reduction of 5-nitrononane-2,8-dione. The LbADH contained a genetically encoded streptavidin (STV)-binding peptide to enable self-immobilization on STV-coated surfaces. The purified enzyme was immobilized by physisorption or chemisorption as monolayers on the flow channel walls, on magnetic microbeads in a packed-bed format, or as self-assembled all-enzyme hydrogels. Moreover, a multila...
Biocatalysis has widened its scope and relevance since new molecular tools, including improved expre...
Our research focusses on highly sustainable enzymatic methods for the preparation of valuable molecu...
Industrial biocatalysis has been identified as one of the key enabling technologies that, together w...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
All-enzyme hydrogels are efficient reagents for continuous flow biocatalysis. These materials can be...
The immobilization of biocatalysts in a continuous fluidic setup is one way to achieve compartmental...
The development of process steps catalyzed by immobilized enzymes usually encompasses the screening ...
The utilization of continuous-flow biochemical reactors, including biocatalysis, biotransformation, ...
The industrial implementation of whole-cells and enzymes in flow biocatalysis microreactors is essen...
The use of flow reactors in biocatalysis has increased significantly in recent years. Chemists have ...
The fundamental principle of biological compartmentalisation of cellular life provides the basis for...
Flow biocatalysis has emerged as an empowering tool to boost the potential of enzymatic reactions to...
All-enzyme hydrogels are biocatalytic materials, with which various enzymes can be immobilized in mi...
Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Lic...
All-enzyme hydrogel (AEH) particles with a hydrodynamic diameter of up to 120 nm were produced intra...
Biocatalysis has widened its scope and relevance since new molecular tools, including improved expre...
Our research focusses on highly sustainable enzymatic methods for the preparation of valuable molecu...
Industrial biocatalysis has been identified as one of the key enabling technologies that, together w...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
All-enzyme hydrogels are efficient reagents for continuous flow biocatalysis. These materials can be...
The immobilization of biocatalysts in a continuous fluidic setup is one way to achieve compartmental...
The development of process steps catalyzed by immobilized enzymes usually encompasses the screening ...
The utilization of continuous-flow biochemical reactors, including biocatalysis, biotransformation, ...
The industrial implementation of whole-cells and enzymes in flow biocatalysis microreactors is essen...
The use of flow reactors in biocatalysis has increased significantly in recent years. Chemists have ...
The fundamental principle of biological compartmentalisation of cellular life provides the basis for...
Flow biocatalysis has emerged as an empowering tool to boost the potential of enzymatic reactions to...
All-enzyme hydrogels are biocatalytic materials, with which various enzymes can be immobilized in mi...
Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Lic...
All-enzyme hydrogel (AEH) particles with a hydrodynamic diameter of up to 120 nm were produced intra...
Biocatalysis has widened its scope and relevance since new molecular tools, including improved expre...
Our research focusses on highly sustainable enzymatic methods for the preparation of valuable molecu...
Industrial biocatalysis has been identified as one of the key enabling technologies that, together w...