DNA nanostructures are expected to be applied for targeted drug delivery to immune cells. However, the structural properties of DNA nanostructures required for the delivery have not fully been elucidated. In this study, we focused on the DNA density that can be important for the their recognition and uptake by immune cells. To examine this, DNA nanostructures with almost identical molecular weights and structural flexibility, but with different shapes and DNA densities, were designed using DNA origami technology. We compared the following five types of DNA nanostructures, all of which consisted of ten DNA helices using an identical circular, single-stranded scaffold and staples. Rec180 had a rectangular-shaped, almost flat structure. Rec90,...
Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve as inh...
Nucleic acids are very important biomolecules in charge of the transmission of the genetic inheritan...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
DNA nanotechnology is an emerging and exciting field, and represents a forefront frontier for the bi...
DNA nanotechnology is an emerging and exciting field, and represents a forefront frontier for the bi...
DNA has been used as a material for the construction of nanoscale objects. These nanostructures are ...
Besides the role of genetic information storage, DNA has been proposed as a new material in nanotech...
Recent advances in the field of nanomaterials demonstrated how their use for vaccination can drastic...
Nucleic acids, DNA and RNA, are naturally occurring biopolymers synthetized by cells to store and pr...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
DNA nanotechnology has seen remarkable growth during the past decade. The exceptionally predictable ...
Nucleic acid nanotechnology exploits the programmable molecular recognition properties of natural an...
DNA, while best known for its coding abilities, can also be used as a structural material to form na...
DNA molecules have been used as the building block for the self-assembly of artificial nanostructure...
Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve as inh...
Nucleic acids are very important biomolecules in charge of the transmission of the genetic inheritan...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
DNA nanotechnology is an emerging and exciting field, and represents a forefront frontier for the bi...
DNA nanotechnology is an emerging and exciting field, and represents a forefront frontier for the bi...
DNA has been used as a material for the construction of nanoscale objects. These nanostructures are ...
Besides the role of genetic information storage, DNA has been proposed as a new material in nanotech...
Recent advances in the field of nanomaterials demonstrated how their use for vaccination can drastic...
Nucleic acids, DNA and RNA, are naturally occurring biopolymers synthetized by cells to store and pr...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
DNA nanotechnology has seen remarkable growth during the past decade. The exceptionally predictable ...
Nucleic acid nanotechnology exploits the programmable molecular recognition properties of natural an...
DNA, while best known for its coding abilities, can also be used as a structural material to form na...
DNA molecules have been used as the building block for the self-assembly of artificial nanostructure...
Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve as inh...
Nucleic acids are very important biomolecules in charge of the transmission of the genetic inheritan...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...