This Communication describes a bioconjugation method for the generation of enzyme microarrays on surfaces using photochemical thiol–ene chemistry in combination with microcontact printing. Glucose oxidase and lactase were readily immobilized (i.e., printing time 2 min) on alkene terminated self-assembled monolayers on glass as demonstrated by X-ray photoelectron spectroscopy and fluorescence microscopy. Furthermore, the activity of both immobilized enzymes was confirmed in single enzyme as well as cascade transformations
Carbohydrate arrays are a vital tool in studying infection, probing the mechanisms of bacterial, vir...
In biosensors, printing involves the transfer of materials, proteins or cells to a substrate. It off...
We describe a straightforward approach to the covalent immobilization of cytophilic proteins by micr...
We are reporting on a novel approach for structured immobilisation of enzymes on gold surfaces modif...
A mild, fast and flexible method for photoimmobilization of biomolecules based on the light-initiate...
Contains fulltext : 84200.pdf (publisher's version ) (Closed access)13 p
We introduce rapid replica molding of ordered, high-aspect-ratio, thiol-ene micropillar arrays for i...
Additional file 2. The fixed parameters in the experiments for optimization of enzyme immobilization
Abstract in Undetermined Immobilized bioelements offer additional sensitivity and/or selectivity in ...
A novel, rapid and simple method for the preparation of emulsion-templated monoliths in microfluidic...
In this paper, we show that carboxylic acid-functionalized molecules can be patterned by photochemic...
In industry, enzymes are often immobilized to generate more stable enzyme preparations that are easi...
Self assembled monolayers (SAMs) of zeolite L crystals were functionalized with fluorescent dye mole...
Biocatalytic control of molecular self-assembly provides an effective approach for developing smart ...
Bioconjugation is key to enabling the diverse applications that biomolecules are capable of mediatin...
Carbohydrate arrays are a vital tool in studying infection, probing the mechanisms of bacterial, vir...
In biosensors, printing involves the transfer of materials, proteins or cells to a substrate. It off...
We describe a straightforward approach to the covalent immobilization of cytophilic proteins by micr...
We are reporting on a novel approach for structured immobilisation of enzymes on gold surfaces modif...
A mild, fast and flexible method for photoimmobilization of biomolecules based on the light-initiate...
Contains fulltext : 84200.pdf (publisher's version ) (Closed access)13 p
We introduce rapid replica molding of ordered, high-aspect-ratio, thiol-ene micropillar arrays for i...
Additional file 2. The fixed parameters in the experiments for optimization of enzyme immobilization
Abstract in Undetermined Immobilized bioelements offer additional sensitivity and/or selectivity in ...
A novel, rapid and simple method for the preparation of emulsion-templated monoliths in microfluidic...
In this paper, we show that carboxylic acid-functionalized molecules can be patterned by photochemic...
In industry, enzymes are often immobilized to generate more stable enzyme preparations that are easi...
Self assembled monolayers (SAMs) of zeolite L crystals were functionalized with fluorescent dye mole...
Biocatalytic control of molecular self-assembly provides an effective approach for developing smart ...
Bioconjugation is key to enabling the diverse applications that biomolecules are capable of mediatin...
Carbohydrate arrays are a vital tool in studying infection, probing the mechanisms of bacterial, vir...
In biosensors, printing involves the transfer of materials, proteins or cells to a substrate. It off...
We describe a straightforward approach to the covalent immobilization of cytophilic proteins by micr...