DNA origamis are fully tailored, programmable, biocompatible and readily functionalizable nanostructures that provide an excellent foundation for the development of sophisticated drug-delivery systems. However, the DNA origami objects suffer from certain drawbacks such as low cell-transfection rates and low stability. A great deal of studies on polymer-based transfection agents, mainly focusing on polyplex formation and toxicity, exists. In this study, the electrostatic binding between a brick-like DNA origami and cationic block-copolymers was explored. The effect of the polymer structure on the binding was investigated and the toxicity of the polymer-origami complexes evaluated. The study shows that all of the analyzed polymers had a suita...
DNA origami structures are artificial molecular nanostructures in which DNA double helices are force...
DNA nanotechnology has established approaches for designing programmable and precisely controlled na...
Folded single-stranded DNA of various shapes – so called DNA origami [1,2] – have become a growing i...
DNA origamis are fully tailored, programmable, biocompatible and readily functionalizable nanostruct...
The DNA origami technique allows the precise synthesis of complex, biocompatible nanomaterials conta...
DNA nanotechnology has established approaches for designing programmable and precisely controlled na...
DNA nanostructures, owing to their controllable and adaptable nature, have been considered as highly...
DNA Nanotechnology allows the synthesis of nanometer sized objects that can be site specifically fun...
This dissertation explores a novel concept and new methodologies for the fabrication of precision (b...
The DNA origami technique is a widely used method to create customized, complex, spatially well-defi...
Intercalation of drug molecules into synthetic DNA nanostructures formed through self-assembled orig...
1700692Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve...
With the introduction of the DNA origami technique, it became possible to rapidly synthesize almost ...
abstract: DNA nanotechnology uses the reliability of Watson-Crick base pairing to program and genera...
The DNA origami technique has proven to have tremendous potential for therapeutic and diagnostic app...
DNA origami structures are artificial molecular nanostructures in which DNA double helices are force...
DNA nanotechnology has established approaches for designing programmable and precisely controlled na...
Folded single-stranded DNA of various shapes – so called DNA origami [1,2] – have become a growing i...
DNA origamis are fully tailored, programmable, biocompatible and readily functionalizable nanostruct...
The DNA origami technique allows the precise synthesis of complex, biocompatible nanomaterials conta...
DNA nanotechnology has established approaches for designing programmable and precisely controlled na...
DNA nanostructures, owing to their controllable and adaptable nature, have been considered as highly...
DNA Nanotechnology allows the synthesis of nanometer sized objects that can be site specifically fun...
This dissertation explores a novel concept and new methodologies for the fabrication of precision (b...
The DNA origami technique is a widely used method to create customized, complex, spatially well-defi...
Intercalation of drug molecules into synthetic DNA nanostructures formed through self-assembled orig...
1700692Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve...
With the introduction of the DNA origami technique, it became possible to rapidly synthesize almost ...
abstract: DNA nanotechnology uses the reliability of Watson-Crick base pairing to program and genera...
The DNA origami technique has proven to have tremendous potential for therapeutic and diagnostic app...
DNA origami structures are artificial molecular nanostructures in which DNA double helices are force...
DNA nanotechnology has established approaches for designing programmable and precisely controlled na...
Folded single-stranded DNA of various shapes – so called DNA origami [1,2] – have become a growing i...