Droplet microfluidics is ideally suited to continuous biochemical analysis, requiring low sample volumes and offering high temporal resolution. Many biochemical assays are based on enzymatic reactions, the kinetics of which can be obtained by probing droplets at multiple points over time. Here we present a miniaturised multi-detector flow cell to analyse enzyme kinetics in droplets, with an example application of continuous glucose measurement. Reaction rates and Michaelis–Menten kinetics can be quantified for each individual droplet and unknown glucose concentrations can be accurately determined (errors <5 %). Droplets can be probed continuously giving short sample-to-result time (~30 s) measurement. In contrast to previous reports of m...
Biological assays often require expensive reagents and tedious manipulations. These shortcomings can...
This paper describes a droplet-based microfluidic chip with pneumatic valves for measuring milliseco...
International audienceWe present a new platform for the production and manipulation of microfluidic ...
Here a micromachined flow cell with enhanced optical sensitivity is presented that allows high-throu...
We present a new microfluidic platform for the study of enzymtatic reactions using static droplets o...
International audienceWe present a new microfluidic platform for the study of enzymtatic reactions u...
By translating bioanalytical testing from the laboratory into the clinic or at home, point-of-care (...
Continuous monitoring of biomarkers such as metabolites and hormones can be extremely useful in unde...
The kinetic activity of individual enzyme molecules was determined in aqueous droplets generated in ...
The kinetic activity of individual enzyme molecules was determined in aqueous droplets generated in ...
In this Paper We propose a microfluidic device that is capable Of generating a concentration gradien...
In this Paper We propose a microfluidic device that is capable Of generating a concentration gradien...
We present the development of a droplet-based device for real-time continuous lactate measurement, h...
The ability to detect multiple analytes in a small sample volume has significance for numerous areas...
Droplet microfluidics - i.e. the use of droplets as microreactors - offers significant advantages fo...
Biological assays often require expensive reagents and tedious manipulations. These shortcomings can...
This paper describes a droplet-based microfluidic chip with pneumatic valves for measuring milliseco...
International audienceWe present a new platform for the production and manipulation of microfluidic ...
Here a micromachined flow cell with enhanced optical sensitivity is presented that allows high-throu...
We present a new microfluidic platform for the study of enzymtatic reactions using static droplets o...
International audienceWe present a new microfluidic platform for the study of enzymtatic reactions u...
By translating bioanalytical testing from the laboratory into the clinic or at home, point-of-care (...
Continuous monitoring of biomarkers such as metabolites and hormones can be extremely useful in unde...
The kinetic activity of individual enzyme molecules was determined in aqueous droplets generated in ...
The kinetic activity of individual enzyme molecules was determined in aqueous droplets generated in ...
In this Paper We propose a microfluidic device that is capable Of generating a concentration gradien...
In this Paper We propose a microfluidic device that is capable Of generating a concentration gradien...
We present the development of a droplet-based device for real-time continuous lactate measurement, h...
The ability to detect multiple analytes in a small sample volume has significance for numerous areas...
Droplet microfluidics - i.e. the use of droplets as microreactors - offers significant advantages fo...
Biological assays often require expensive reagents and tedious manipulations. These shortcomings can...
This paper describes a droplet-based microfluidic chip with pneumatic valves for measuring milliseco...
International audienceWe present a new platform for the production and manipulation of microfluidic ...