Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a versatile method for bottom-up fabrication of novel nanometer-scale materials and devices. However, lengths of conventional single-stranded scaffolds, for example, 7,249-nucleotide circular genomic DNA from the M13mp18 phage, limit the scales of these uniquely addressable structures. Additionally, increasing DNA origami size generates the cost burden of increased staple-strand synthesis. We addressed this 2-fold problem by developing the following methods: (1) production of the largest to-date biologically derived single-stranded scaffold using a λ/M13 hybrid virus to produce a 51 466-nucleotide DNA in a circular, single-stranded form and (2) ...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a v...
Although structural DNA nanotechnology, and especially scaffolded DNA origami, hold great promise fo...
Since the introduction of scaffolded DNA origami 1 the tech-nology has been extensively applied to e...
As a milestone in DNA self-assembly, DNA origami has demonstrated powerful applications in many fiel...
DNA origami is a powerful tool for the production of self-assembled nanostructures and has shown pro...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
DNA origami, a method for constructing nanoscale objects, relies on a long single strand of DNA to a...
Scaffolded DNA origami is a widely used technology for self-assembling precisely structured nanoscal...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
Abstract — The generation of arbitrary patterns and shapes at very small scales is at the heart of o...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
Structural DNA nanotechnology, and specifically scaffolded DNA origami, is rapidly developing as a v...
Although structural DNA nanotechnology, and especially scaffolded DNA origami, hold great promise fo...
Since the introduction of scaffolded DNA origami 1 the tech-nology has been extensively applied to e...
As a milestone in DNA self-assembly, DNA origami has demonstrated powerful applications in many fiel...
DNA origami is a powerful tool for the production of self-assembled nanostructures and has shown pro...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
DNA origami, a method for constructing nanoscale objects, relies on a long single strand of DNA to a...
Scaffolded DNA origami is a widely used technology for self-assembling precisely structured nanoscal...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
Abstract — The generation of arbitrary patterns and shapes at very small scales is at the heart of o...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
The use of DNA as a nanoscale construction material has been a rapidly developing field since the 19...