Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform for monitoring the substrate turnover of many individual enzyme molecules in parallel. The high degree of parallelization enables the analysis of a statistically representative enzyme population. Enclosing individual enzyme molecules in microwells does not require any surface immobilization step and enables the kinetic investigation of enzymes free in solution. This review describes various microwell array formats and explores their applications for the detection and investigation of single enzyme molecules. The development of new fabrication techniques and sensitive detection methods drives the field of single molecule enzymology. Here, we int...
A device with femtoliter-scale chambers and controlled reaction initiation was developed for single-...
In the last decade, several methods have been developed to measure enzyme activity at the level of a...
In this thesis, we have demonstrated the application of micro- and nanofluidic devices to generate a...
Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform fo...
This report describes a novel method for isolating and detecting individual enzyme molecules using p...
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 ...
Classical methods to study single enzyme molecules have provided valuable information about the dist...
Abstract Arrays of small reaction containers, ranging from 624 femtoliters (10–15 L) to 270 attolite...
Methods for accurately quantifying the concentration of a particular analyte in solution are all bas...
We present a simple microfluidic method to generate high-density femotoliter-sized microreactor arra...
: Microsystems based on microwell arrays have been widely used for studies on single living cells. I...
Most of the methods dedicated to the monitoring of metabolic responses from isolated mitochondria ar...
In the present study we demonstrate highly sensitive detection of rare, aberrant cells in a populati...
Microsystems based on microwell arrays have been widely used for studies on single living cells. In ...
A device with femtoliter-scale chambers and controlled reaction initiation was developed for single-...
In the last decade, several methods have been developed to measure enzyme activity at the level of a...
In this thesis, we have demonstrated the application of micro- and nanofluidic devices to generate a...
Large arrays of homogeneous microwells each defining a femtoliter volume are a versatile platform fo...
This report describes a novel method for isolating and detecting individual enzyme molecules using p...
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 ...
Classical methods to study single enzyme molecules have provided valuable information about the dist...
Abstract Arrays of small reaction containers, ranging from 624 femtoliters (10–15 L) to 270 attolite...
Methods for accurately quantifying the concentration of a particular analyte in solution are all bas...
We present a simple microfluidic method to generate high-density femotoliter-sized microreactor arra...
: Microsystems based on microwell arrays have been widely used for studies on single living cells. I...
Most of the methods dedicated to the monitoring of metabolic responses from isolated mitochondria ar...
In the present study we demonstrate highly sensitive detection of rare, aberrant cells in a populati...
Microsystems based on microwell arrays have been widely used for studies on single living cells. In ...
A device with femtoliter-scale chambers and controlled reaction initiation was developed for single-...
In the last decade, several methods have been developed to measure enzyme activity at the level of a...
In this thesis, we have demonstrated the application of micro- and nanofluidic devices to generate a...