DNA origami possesses a promising prospect in the fields including cancer therapy, enhancing catalytic activity, controllable nanorobot, etc. However, all the brilliant performances are based on its structural integrity, which is a big challenge for this technology. In this paper, we investigated the effects of interface on the stability of DNA origami and found that with treatments like heating, pH fluctuation, reducing ionic strength, the origami on interface always showed better stability than that in bulk solution because of the restriction imposed by the bond between solid surface and origami. Our results have great potential to inspire researchers to develop a complex that can provide origami an interface to strengthen its stability
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
Understanding the thermodynamic properties of complex DNA nanostructures, including rationally desig...
We report the effect of chemical and physical treatments on the structural stability of DNA origami ...
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...
DNA origami nanostructures are widely employed in various areas of fundamental and applied research....
\u3cp\u3eThe DNA origami technique has proven to have tremendous potential for therapeutic and diagn...
| openaire: EC/H2020/101030869/EU//ROBOT Sensing Funding Information: This work was supported by the...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
Unlike supramolecular self-assembly methods that can organize many distinct components into designer...
The low thermal stability of DNA nanostructures is the major drawback in their practical application...
DNA origami represents a class of highly programmable macromolecules. Their moderate mechanical rigi...
DNA origami represents a class of highly programmable macromolecules that can go through conformatio...
DNA origami nanostructures are regarded as powerful and versatile vehicles for targeted drug deliver...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
Understanding the thermodynamic properties of complex DNA nanostructures, including rationally desig...
We report the effect of chemical and physical treatments on the structural stability of DNA origami ...
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...
DNA origami nanostructures are widely employed in various areas of fundamental and applied research....
\u3cp\u3eThe DNA origami technique has proven to have tremendous potential for therapeutic and diagn...
| openaire: EC/H2020/101030869/EU//ROBOT Sensing Funding Information: This work was supported by the...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
Unlike supramolecular self-assembly methods that can organize many distinct components into designer...
The low thermal stability of DNA nanostructures is the major drawback in their practical application...
DNA origami represents a class of highly programmable macromolecules. Their moderate mechanical rigi...
DNA origami represents a class of highly programmable macromolecules that can go through conformatio...
DNA origami nanostructures are regarded as powerful and versatile vehicles for targeted drug deliver...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
Understanding the thermodynamic properties of complex DNA nanostructures, including rationally desig...