The DNA origami technology holds great promise for the assembly of nanoscopic technological devices and studies of biochemical reactions at the single-molecule level. For these, it is essential to establish well controlled attachment of functional materials to predefined sites on the DNA origami nanostructures for reliable measurements and versatile applications. However, the two-sided nature of the origami scaffold has shown limitations in this regard. We hypothesized that holes of the commonly used two-dimensional DNA origami designs are large enough for the passage of single-stranded (ss)-DNA. Sufficiently long ssDNA initially located on one side of the origami should thus be able to “thread” to the other side through the holes in the or...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a v...
Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a v...
This work made use of the strong interaction between biotin and streptavidin to connect designed DNA...
DNA provides an ideal substrate for the engineering of versatile nanostructures due to its reliable ...
DnA origami involves the folding of long single-stranded DnA into designed structures with the aid o...
DNA provides an ideal substrate for the engineering of versatile nanostructures due to its reliable ...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami is a robust method for the creation of nanostructures with arbitrary shapes, whereby a l...
We combine DNA origami structures with glass nanocapillaries to reversibly form hybrid DNA origami n...
| openaire: EC/H2020/101030869/EU//ROBOT Sensing Funding Information: This work was supported by the...
We combine DNA origami structures with glass nanocapillaries to reversibly form hybrid DNA origami n...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA origami nanostructures are versatile substrates for the controlled arrangement of molecular capt...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a v...
Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a v...
This work made use of the strong interaction between biotin and streptavidin to connect designed DNA...
DNA provides an ideal substrate for the engineering of versatile nanostructures due to its reliable ...
DnA origami involves the folding of long single-stranded DnA into designed structures with the aid o...
DNA provides an ideal substrate for the engineering of versatile nanostructures due to its reliable ...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami is a robust method for the creation of nanostructures with arbitrary shapes, whereby a l...
We combine DNA origami structures with glass nanocapillaries to reversibly form hybrid DNA origami n...
| openaire: EC/H2020/101030869/EU//ROBOT Sensing Funding Information: This work was supported by the...
We combine DNA origami structures with glass nanocapillaries to reversibly form hybrid DNA origami n...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA origami nanostructures are versatile substrates for the controlled arrangement of molecular capt...
Self-assembled DNA nanostructures feature an unprecedented addressability with sub-nanometer precisi...
Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a v...
Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a v...