AbstractIn this contribution we explore a new and simple approach for immobilizing enzymes like glucose oxidase on SU-8 surfaces to develop a smart substrate integrated in microfluidics. SU-8 is a well known photoresist often used in microfluidic prototyping. Immobilization of enzymes on such substance can open new possibilities in the microfabrication of enzyme biosensors and bioreactors. To demonstrate the consistency of this approach, we describe the design, fabrication and the simple functionalization of a microfluidic bioreactor employing smart SU-8 pillars for continuous amperometric measurement of glucose. The results reveal the possibility of simply binding enzymes on SU-8 surface. Moreover, a significant improvement in the linear r...
[[abstract]]This paper reports a novel fluidic network dispensing equal amount of enzymes to arrays ...
The development of continuous glucose monitoring systems is a major trend in diabetes-related resear...
In this work we show the functionalization of the interior of microfluidic glass chips with poly(2-h...
In this contribution we explore a new and simple approach for immobilizing enzymes like glucose oxid...
AbstractIn this contribution we explore a new and simple approach for immobilizing enzymes like gluc...
The present work investigates the utilisation of the widely used SU-8 photoresist as an immobilisati...
The present project investigated and proved the concept of developing a novel BioMEMS glucose micro...
Biosensors which are based on BioMEMS combine developments in micro-nanotechnology and biological re...
This paper presents a disposable minimally invasive self-calibrating continuous glucose monitor cons...
Abstract Bioprocessing is of crucial importance in pharmaceutical, biofuel, food and other industri...
The surface modification, fabrication and characterization of microfluidic sensor systems for oxygen...
In this work we demonstrate a novel microfluidic based platform to investigate the performance of 3D...
Glucose measurements are of tremendous interest in biotechnology. Electrochemical and optical method...
A simple and efficient method using enzyme immobilized microfluidic channel as open tubular microrea...
The development of continuous glucose monitoring systems is a major trend in diabetes-related resear...
[[abstract]]This paper reports a novel fluidic network dispensing equal amount of enzymes to arrays ...
The development of continuous glucose monitoring systems is a major trend in diabetes-related resear...
In this work we show the functionalization of the interior of microfluidic glass chips with poly(2-h...
In this contribution we explore a new and simple approach for immobilizing enzymes like glucose oxid...
AbstractIn this contribution we explore a new and simple approach for immobilizing enzymes like gluc...
The present work investigates the utilisation of the widely used SU-8 photoresist as an immobilisati...
The present project investigated and proved the concept of developing a novel BioMEMS glucose micro...
Biosensors which are based on BioMEMS combine developments in micro-nanotechnology and biological re...
This paper presents a disposable minimally invasive self-calibrating continuous glucose monitor cons...
Abstract Bioprocessing is of crucial importance in pharmaceutical, biofuel, food and other industri...
The surface modification, fabrication and characterization of microfluidic sensor systems for oxygen...
In this work we demonstrate a novel microfluidic based platform to investigate the performance of 3D...
Glucose measurements are of tremendous interest in biotechnology. Electrochemical and optical method...
A simple and efficient method using enzyme immobilized microfluidic channel as open tubular microrea...
The development of continuous glucose monitoring systems is a major trend in diabetes-related resear...
[[abstract]]This paper reports a novel fluidic network dispensing equal amount of enzymes to arrays ...
The development of continuous glucose monitoring systems is a major trend in diabetes-related resear...
In this work we show the functionalization of the interior of microfluidic glass chips with poly(2-h...