Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precision and accuracy. This addressability relies on the ability to attach functional entities to single DNA strands in these structures. The efficiency of this attachment depends on two factors: incorporation of the strand of interest and accessibility of this strand for downstream modification. Here we use DNA-PAINT super-resolution microscopy to quantify both incorporation and accessibility of all individual strands in DNA origami with molecular resolution. We find that strand incorporation strongly correlates with the position in the structure, ranging from a minimum of 48% on the edges to a maximum of 95% in the center. Our method offers a dir...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
An orthogonal, noncovalent approach to direct the assembly of higher-order DNA origami nanostructure...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Nanotechnology often exploits DNA origami nanostructures assembled into even larger superstructures ...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
Methods to engineer nanomaterials and devices with uniquely tailored properties are highly sought af...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
Methods to engineer nanomaterials and devices with uniquely tailored properties are highly sought af...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
An orthogonal, noncovalent approach to direct the assembly of higher-order DNA origami nanostructure...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Nanotechnology often exploits DNA origami nanostructures assembled into even larger superstructures ...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
Methods to engineer nanomaterials and devices with uniquely tailored properties are highly sought af...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
Methods to engineer nanomaterials and devices with uniquely tailored properties are highly sought af...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
An orthogonal, noncovalent approach to direct the assembly of higher-order DNA origami nanostructure...