Monitoring biomolecules in single-particle tracking experiments is typically achieved by employing fixed organic dyes or fluorescent fusion proteins linked to a target of interest. However, photobleaching typically limits observation times to merely a few seconds, restricting downstream statistical analysis and observation of rare biological events. Here, we overcome this inherent limitation via continuous fluorophore exchange using DNA-PAINT, where fluorescently-labeled oligonucleotides reversibly bind to a single-stranded DNA handle attached to the target molecule. Such versatile and facile labeling allows uninterrupted monitoring of single molecules for extended durations. We demonstrate the power of our approach by observing DNA origami...
There is a need for sensing technologies that can continuously monitor concentration levels of criti...
Single-molecule fluorescence imaging techniques have become important tools in biological research t...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
The amount of information obtainable from a fluorescence-based measurement is limited by photobleach...
Photobleaching limits extended imaging of fluorescent biological samples. We developed DNA-based 'Fl...
AbstractWe have previously introduced tethered fluorophore motion (TFM), a single-molecule fluoresce...
In the last two decades emerging single-molecule fluorescence tools have been developed and adapted ...
Biomolecular systems, such as proteins, crucially rely on dynamic processes at the nanoscale. Detect...
Recent advances in fluorescence super-resolution microscopy have allowed sub-cellular features and s...
Studies of biomolecules in vivo are crucial to understand their function in a natural, biological co...
Recent advances in fluorescence super-resolution microscopy have allowed subcellular features and sy...
We study the distance-dependent quenching of fluorescence due to a metallic nanoparticle in proximit...
AbstractSingle-molecule fluorescence microscopy is a powerful tool for observing biomolecular intera...
Single-molecule localization microscopy (SMLM) can reveal nanometric details of biological samples, ...
There is a need for sensing technologies that can continuously monitor concentration levels of criti...
Single-molecule fluorescence imaging techniques have become important tools in biological research t...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
The amount of information obtainable from a fluorescence-based measurement is limited by photobleach...
Photobleaching limits extended imaging of fluorescent biological samples. We developed DNA-based 'Fl...
AbstractWe have previously introduced tethered fluorophore motion (TFM), a single-molecule fluoresce...
In the last two decades emerging single-molecule fluorescence tools have been developed and adapted ...
Biomolecular systems, such as proteins, crucially rely on dynamic processes at the nanoscale. Detect...
Recent advances in fluorescence super-resolution microscopy have allowed sub-cellular features and s...
Studies of biomolecules in vivo are crucial to understand their function in a natural, biological co...
Recent advances in fluorescence super-resolution microscopy have allowed subcellular features and sy...
We study the distance-dependent quenching of fluorescence due to a metallic nanoparticle in proximit...
AbstractSingle-molecule fluorescence microscopy is a powerful tool for observing biomolecular intera...
Single-molecule localization microscopy (SMLM) can reveal nanometric details of biological samples, ...
There is a need for sensing technologies that can continuously monitor concentration levels of criti...
Single-molecule fluorescence imaging techniques have become important tools in biological research t...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...