DNA points accumulation in nanoscale topography (DNA-PAINT) is a relatively easy-to-implement super-resolution technique. However, image acquisition is slow compared to most other approaches. Here, we overcome this limitation by designing optimized DNA sequences and buffer conditions. We demonstrate our approach in vitro with DNA origami and in situ using cell samples, and achieve an order of magnitude faster imaging speeds without compromising image quality or spatial resolution. This improvement now makes DNA-PAINT applicable to high-throughput studies
DNA-based point accumulation imaging in nanoscale topography (DNA-PAINT) is a single molecule locali...
Abstract Super-resolution fluorescence microscopy in the current form is hard to be used to image th...
Recent advances in fluorescence super-resolution microscopy have allowed subcellular features and sy...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
DNA point accumulation in nanoscale topography (DNA-PAINT) enables super-resolution microscopy by ha...
DNA-points accumulation for imaging in nanoscale topography (PAINT) is a Single-Molecule Localizatio...
Super-resolution imaging allows for the visualization of cellular structures on a nanoscale level. D...
Single-molecule localization microscopy (SMLM) is a potent tool to examine biological systems with u...
Super-resolution microscopies, such as single molecule localization microscopy (SMLM), allow the vis...
DNA-PAINT is a powerful super-resolution imaging method but is limited in speed due to slow exchange...
Optical super-resolution microscopy is rapidly changing the way imaging studies in the biological an...
DNA point accumulation for imaging in nanoscale topography (PAINT) is a rapidly developing fluoresce...
DNA points accumulation for imaging in nanoscale topography (DNA-PAINT) is a super-resolution techni...
Single-molecule localization microscopy (SMLM) can visualize biological targets on the nanoscale, bu...
DNA-PAINT is a versatile optical super-resolution technique relying on the transient binding of fluo...
DNA-based point accumulation imaging in nanoscale topography (DNA-PAINT) is a single molecule locali...
Abstract Super-resolution fluorescence microscopy in the current form is hard to be used to image th...
Recent advances in fluorescence super-resolution microscopy have allowed subcellular features and sy...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
DNA point accumulation in nanoscale topography (DNA-PAINT) enables super-resolution microscopy by ha...
DNA-points accumulation for imaging in nanoscale topography (PAINT) is a Single-Molecule Localizatio...
Super-resolution imaging allows for the visualization of cellular structures on a nanoscale level. D...
Single-molecule localization microscopy (SMLM) is a potent tool to examine biological systems with u...
Super-resolution microscopies, such as single molecule localization microscopy (SMLM), allow the vis...
DNA-PAINT is a powerful super-resolution imaging method but is limited in speed due to slow exchange...
Optical super-resolution microscopy is rapidly changing the way imaging studies in the biological an...
DNA point accumulation for imaging in nanoscale topography (PAINT) is a rapidly developing fluoresce...
DNA points accumulation for imaging in nanoscale topography (DNA-PAINT) is a super-resolution techni...
Single-molecule localization microscopy (SMLM) can visualize biological targets on the nanoscale, bu...
DNA-PAINT is a versatile optical super-resolution technique relying on the transient binding of fluo...
DNA-based point accumulation imaging in nanoscale topography (DNA-PAINT) is a single molecule locali...
Abstract Super-resolution fluorescence microscopy in the current form is hard to be used to image th...
Recent advances in fluorescence super-resolution microscopy have allowed subcellular features and sy...