Single-molecule detection schemes offer powerful means to overcome static and dynamic heterogeneity inherent to complex samples. However, probing biomolecular interactions and reactions with high throughput and time resolution remains challenging, often requiring surface-immobilized entities. Here, we introduce glass-made nanofluidic devices for the high-throughput detection of freely-diffusing single biomolecules by camera-based fluorescence microscopy. Nanochannels of 200 nm height and a width of several micrometers confine the movement of biomolecules. Using pressure-driven flow through an array of parallel nanochannels and by tracking the movement of fluorescently labelled DNA oligonucleotides, we observe conformational changes with hig...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
The single-molecule approach seeks to understand molecular mechanisms by observing biomolecular proc...
This thesis focuses on the characterization of DNA polymerases with single-molecule techniques. More...
Single-molecule detection schemes offer powerful means to overcome static and dynamic heterogeneity ...
Single-molecule detection schemes offer powerful means to overcome static and dynamic heterogeneity ...
We introduce a nanofluidic mixing device entirely fabricated in glass for the fluorescence detection...
This paper introduces a novel fluidic device based on syringe-driven flow of fluorescent species thr...
Single DNA molecule techniques have revolutionized our understanding of DNA-protein interactions. Tr...
We report an approach to study the in situ conformational response of single biomolecules such as DN...
We introduce a nanofluidic mixing device entirely fabricated in glass for the fluorescence detection...
The observation and manipulation of single biomolecules allow their dynamic behaviors to be studied ...
Since the pioneering studies on single ion-channel recordings in 1976, single molecule methods have...
We describe a high-throughput, automated single-molecule measurement system, equipped with microfl...
Exploring and understanding how the smallest scale features of a cell affect biochemical reactions h...
Single-molecule fluorescence detection offers powerful ways to study biomolecules and their complex ...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
The single-molecule approach seeks to understand molecular mechanisms by observing biomolecular proc...
This thesis focuses on the characterization of DNA polymerases with single-molecule techniques. More...
Single-molecule detection schemes offer powerful means to overcome static and dynamic heterogeneity ...
Single-molecule detection schemes offer powerful means to overcome static and dynamic heterogeneity ...
We introduce a nanofluidic mixing device entirely fabricated in glass for the fluorescence detection...
This paper introduces a novel fluidic device based on syringe-driven flow of fluorescent species thr...
Single DNA molecule techniques have revolutionized our understanding of DNA-protein interactions. Tr...
We report an approach to study the in situ conformational response of single biomolecules such as DN...
We introduce a nanofluidic mixing device entirely fabricated in glass for the fluorescence detection...
The observation and manipulation of single biomolecules allow their dynamic behaviors to be studied ...
Since the pioneering studies on single ion-channel recordings in 1976, single molecule methods have...
We describe a high-throughput, automated single-molecule measurement system, equipped with microfl...
Exploring and understanding how the smallest scale features of a cell affect biochemical reactions h...
Single-molecule fluorescence detection offers powerful ways to study biomolecules and their complex ...
Classical methods to study single enzyme molecules have pro- vided valuable information about the di...
The single-molecule approach seeks to understand molecular mechanisms by observing biomolecular proc...
This thesis focuses on the characterization of DNA polymerases with single-molecule techniques. More...