DNA origami, a method for constructing nanoscale objects, relies on a long single strand of DNA to act as the 'scaffold' to template assembly of numerous short DNA oligonucleotide 'staples'. The ability to generate custom scaffold sequences can greatly benefit DNA origami design processes. Custom scaffold sequences can provide better control of the overall size of the final object and better control of low-level structural details, such as locations of specific base pairs within an object. Filamentous bacteriophages and related phagemids can work well as sources of custom scaffold DNA. However, scaffolds derived from phages require inclusion of multi-kilobase DNA sequences in order to grow in host bacteria, and those sequences cannot be alt...
DNA origami nano-objects are usually designed around generic single-stranded “scaffolds”. Many prope...
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...
DNA origami is a powerful tool for the production of self-assembled nanostructures and has shown pro...
Motivated by the continuous growth of data storage capacity the semiconductor memory materials are a...
Motivated by the continuous growth of data storage capacity the semiconductor memory materials are a...
Motivated by the continuous growth of data storage capacity the semiconductor memory materials are a...
Motivated by the continuous growth of data storage capacity the semiconductor memory materials are a...
DNA origami is a promising novel biotechnology because DNA is a small, stable, and dense biomaterial...
The demand for memory storage will soon outrun the supply of naturally occurring silicon on Earth (Z...
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...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
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...
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...
DNA origami is a powerful tool for the production of self-assembled nanostructures and has shown pro...
Motivated by the continuous growth of data storage capacity the semiconductor memory materials are a...
Motivated by the continuous growth of data storage capacity the semiconductor memory materials are a...
Motivated by the continuous growth of data storage capacity the semiconductor memory materials are a...
Motivated by the continuous growth of data storage capacity the semiconductor memory materials are a...
DNA origami is a promising novel biotechnology because DNA is a small, stable, and dense biomaterial...
The demand for memory storage will soon outrun the supply of naturally occurring silicon on Earth (Z...
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...
The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucle...
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...
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...