DNA origami nanostructures (DONs) are promising substrates for the single-molecule investigation of biomolecular reactions and dynamics by in situ atomic force microscopy (AFM). For this, they are typically immobilized on mica substrates by adding millimolar concentrations of Mg2+ ions to the sample solution, which enable the adsorption of the negatively charged DONs at the like-charged mica surface. These non-physiological Mg2+ concentrations, however, present a serious limitation in such experiments as they may interfere with the reactions and processes under investigation. Therefore, we here evaluate three approaches to efficiently immobilize DONs at mica surfaces under essentially Mg2+-free conditions. These approaches rely on the pre-a...
The DNA origami method allows the creation of complex 2D and 3D patterns with nanometric precision, ...
The discovery of DNA origami nanotechnology has opened new opportunities in this field due to the ve...
DNA origami structures are artificial molecular nanostructures in which DNA double helices are force...
The flexible and precise immobilization of self-organizing DNA nanostructures represents a key step ...
AbstractAtomic force microscopy was used to image single-stranded DNA (ssDNA) adsorbed on mica modif...
Metamaterials obtain new properties from having metallized nanoscale features that are often arrange...
DNA origami nanostructures have tremendous potential to serve as versatile platforms in self-assembl...
DNA origami nanostructures have tremendous potential to serve as versatile platforms in self-assembl...
Abstract — Self-assembled DNA nanostructures promise low-cost ways to create nanoscale shapes. DNA n...
\u3cp\u3eThe DNA origami technique has proven to have tremendous potential for therapeutic and diagn...
The nanoscale manipulation of 1D soft and flexible 'DNA origami nanotubes' (DONs) that are 6...
A simple, controllable and effective sample preparation method was established for atomic force micr...
abstract: DNA nanotechnology uses the reliability of Watson-Crick base pairing to program and genera...
DNA origami nanostructures allow for the arrangement of different functionalities such as proteins, ...
Surfaces that modulate the behaviour of surface-immobilised biomolecules have been of critical inter...
The DNA origami method allows the creation of complex 2D and 3D patterns with nanometric precision, ...
The discovery of DNA origami nanotechnology has opened new opportunities in this field due to the ve...
DNA origami structures are artificial molecular nanostructures in which DNA double helices are force...
The flexible and precise immobilization of self-organizing DNA nanostructures represents a key step ...
AbstractAtomic force microscopy was used to image single-stranded DNA (ssDNA) adsorbed on mica modif...
Metamaterials obtain new properties from having metallized nanoscale features that are often arrange...
DNA origami nanostructures have tremendous potential to serve as versatile platforms in self-assembl...
DNA origami nanostructures have tremendous potential to serve as versatile platforms in self-assembl...
Abstract — Self-assembled DNA nanostructures promise low-cost ways to create nanoscale shapes. DNA n...
\u3cp\u3eThe DNA origami technique has proven to have tremendous potential for therapeutic and diagn...
The nanoscale manipulation of 1D soft and flexible 'DNA origami nanotubes' (DONs) that are 6...
A simple, controllable and effective sample preparation method was established for atomic force micr...
abstract: DNA nanotechnology uses the reliability of Watson-Crick base pairing to program and genera...
DNA origami nanostructures allow for the arrangement of different functionalities such as proteins, ...
Surfaces that modulate the behaviour of surface-immobilised biomolecules have been of critical inter...
The DNA origami method allows the creation of complex 2D and 3D patterns with nanometric precision, ...
The discovery of DNA origami nanotechnology has opened new opportunities in this field due to the ve...
DNA origami structures are artificial molecular nanostructures in which DNA double helices are force...