At its inception DNA nanotechnology was conceived as a tool for spatially arranging biological molecules in a pro- grammable and deterministic way to improve their interrogation. To date, DNA nanotechnology has provided a versatile toolset of nanostructures and functional devices to augment traditional single molecule investigation approaches – including atomic force microscopy – by isolating, arranging and contextualising biological systems at the single molecule level. This review explores the state-of-the-art of DNA-based nanoscale tools employed to enhance and tune the interrogation of biological reactions, the study of spatially distributed pathways, the visu- alisation of enzyme interactions, the application and detection of forces to...
DNA nanotechnology has been enormously successful in using DNA as a nanoscale construction material,...
DNA nanotechnology is an emerging field that provides tools to design and create programmable, spati...
The discovery of sequence-specific hybridization has allowed the development of DNA nanotechnology, ...
At its inception DNA nanotechnology was conceived as a tool for spatially arranging biological molec...
abstract: Nature is a master at organizing biomolecules in all intracellular processes, and research...
This book is intended for non-specialists and students, presenting a unique introduction to the fiel...
DNA nanotechnology holds substantial promise for future biomedical engineering and the development o...
Precise characterization of biomolecular information such as molecular structures or intermolecular ...
L iving systems have evolved a variety of nanostructures to control themolecular interactions that m...
Since from the past few decades DNA appeared as an excellent molecular building block for the synthe...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
We review the current developments of DNA-based nanostructures for drug delivery, immunotherapy, dia...
Understanding biomolecular information at the single-molecule level requires tools for manipulating ...
DNA has been selected by millennia of evolution as the primary molecule that carries, preserves and ...
AbstractStructural DNA nanotechnology consists of combining unusual DNA motifs by specific structura...
DNA nanotechnology has been enormously successful in using DNA as a nanoscale construction material,...
DNA nanotechnology is an emerging field that provides tools to design and create programmable, spati...
The discovery of sequence-specific hybridization has allowed the development of DNA nanotechnology, ...
At its inception DNA nanotechnology was conceived as a tool for spatially arranging biological molec...
abstract: Nature is a master at organizing biomolecules in all intracellular processes, and research...
This book is intended for non-specialists and students, presenting a unique introduction to the fiel...
DNA nanotechnology holds substantial promise for future biomedical engineering and the development o...
Precise characterization of biomolecular information such as molecular structures or intermolecular ...
L iving systems have evolved a variety of nanostructures to control themolecular interactions that m...
Since from the past few decades DNA appeared as an excellent molecular building block for the synthe...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
We review the current developments of DNA-based nanostructures for drug delivery, immunotherapy, dia...
Understanding biomolecular information at the single-molecule level requires tools for manipulating ...
DNA has been selected by millennia of evolution as the primary molecule that carries, preserves and ...
AbstractStructural DNA nanotechnology consists of combining unusual DNA motifs by specific structura...
DNA nanotechnology has been enormously successful in using DNA as a nanoscale construction material,...
DNA nanotechnology is an emerging field that provides tools to design and create programmable, spati...
The discovery of sequence-specific hybridization has allowed the development of DNA nanotechnology, ...