As a milestone in DNA self-assembly, DNA origami has demonstrated powerful applications in many fields. However, the scarce availability of long single-stranded DNA (ssDNA) limits the size and sequences of DNA origami nanostructures, which in turn impedes the further development. In this study, we present a robust strategy to produce long circular ssDNA scaffold strands with custom-tailored lengths and sequences. These ssDNA products were then used as scaffolds for constructing various DNA origami nanostructures. This scalable method produces ssDNA at low cost with high purity and high yield, which can enable production of custom-designed DNA origami for various applications
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
The generation of arbitrary patterns and shapes at very small scales is at the heart of our effort t...
Although structural DNA nanotechnology, and especially scaffolded DNA origami, hold great promise fo...
Scaffolded DNA origami is a widely used technology for self-assembling precisely structured nanoscal...
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...
DNA origami nano-objects are usually designed around generic single-stranded “scaffolds”. Many prope...
DNA origami nano-objects are usually designed around generic single-stranded “scaffolds”. Many prope...
DNA origami nano-objects are usually designed around generic single-stranded “scaffolds”. Many prope...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
DNA origami nanostructures generally require a single scaffold strand of specific length, combined w...
DNA origami nanostructures generally require a single scaffold strand of specific length, combined w...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
Since the introduction of scaffolded DNA origami 1 the tech-nology has been extensively applied to e...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
The generation of arbitrary patterns and shapes at very small scales is at the heart of our effort t...
Although structural DNA nanotechnology, and especially scaffolded DNA origami, hold great promise fo...
Scaffolded DNA origami is a widely used technology for self-assembling precisely structured nanoscal...
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...
DNA origami nano-objects are usually designed around generic single-stranded “scaffolds”. Many prope...
DNA origami nano-objects are usually designed around generic single-stranded “scaffolds”. Many prope...
DNA origami nano-objects are usually designed around generic single-stranded “scaffolds”. Many prope...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
DNA origami nanostructures generally require a single scaffold strand of specific length, combined w...
DNA origami nanostructures generally require a single scaffold strand of specific length, combined w...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
Since the introduction of scaffolded DNA origami 1 the tech-nology has been extensively applied to e...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
The generation of arbitrary patterns and shapes at very small scales is at the heart of our effort t...
Although structural DNA nanotechnology, and especially scaffolded DNA origami, hold great promise fo...