DNA origami nanostructures are regarded as powerful and versatile vehicles for targeted drug delivery. So far, DNA origami-based drug delivery strategies mostly use intercalation of the therapeutic molecules between the base pairs of the DNA origami’s double helices for drug loading. The binding of nonintercalating drugs to DNA origami nanostructures, however, is less studied. Therefore, in this work, we investigate the interaction of the drug methylene blue (MB) with different DNA origami nanostructures under conditions that result in minor groove binding. We observe a noticeable effect of DNA origami superstructure on the binding affinity of MB. In particular, non-B topologies as for instance found in designs using the square lattice with...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami has emerged as a versatile method to synthesize nanostructures with high precision. This...
Although a multitude of promising anti-cancer drugs have been developed over the past 50 years, effe...
DNA origami nanostructures are regarded as powerful and versatile vehicles for targeted drug deliver...
Intercalation of drug molecules into synthetic DNA nanostructures formed through self-assembled orig...
DNA origami represents a class of highly programmable macromolecules. Their moderate mechanical rigi...
The development of scaffolded DNA origami, a technique in which a long single-stranded viral genome ...
With the introduction of the DNA origami technique, it became possible to rapidly synthesize almost ...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
DNA origami possesses a promising prospect in the fields including cancer therapy, enhancing catalyt...
The DNA origami technology holds great promise for the assembly of nanoscopic technological devices ...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA origami has received enormous attention for its ability to program complex nanostructures with a...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami has emerged as a versatile method to synthesize nanostructures with high precision. This...
Although a multitude of promising anti-cancer drugs have been developed over the past 50 years, effe...
DNA origami nanostructures are regarded as powerful and versatile vehicles for targeted drug deliver...
Intercalation of drug molecules into synthetic DNA nanostructures formed through self-assembled orig...
DNA origami represents a class of highly programmable macromolecules. Their moderate mechanical rigi...
The development of scaffolded DNA origami, a technique in which a long single-stranded viral genome ...
With the introduction of the DNA origami technique, it became possible to rapidly synthesize almost ...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
DNA origami possesses a promising prospect in the fields including cancer therapy, enhancing catalyt...
The DNA origami technology holds great promise for the assembly of nanoscopic technological devices ...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA origami has received enormous attention for its ability to program complex nanostructures with a...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami has emerged as a versatile method to synthesize nanostructures with high precision. This...
Although a multitude of promising anti-cancer drugs have been developed over the past 50 years, effe...