DNA nanotechnology is an emerging field that provides tools to design and create programmable, spatially\u2013resolved, functional nano-scale devices with potential application ranging from synthetic biology to theranostics. The first part of this thesis addresses the fundamental question of whether it is possible to study the function and the recognition of proteins in an in-vitro milieu that is similar to intracellular conditions, in terms of crowding, confinement and compartmentalization, without the use of crowding agents and obtain information that are triggered by localized and nanoscale crowding. To this end, we design and construct surface-bound functional, sequence-dependent DNA nanoreactors with distinct inherent heterogeneity an...
The goal of my research program is to develop a DNA-based nanosensor for nucleic acids analysis. I p...
The biofunctionalization of nanopatterned surfaces with DNA origami nanostructures is an important t...
A central question in DNA biosensors is how the surface structure impact the molecular recognition, ...
The bottom-up design of smart nanodevices largely depends on the accuracy by which each of the inher...
8siThe bottom-up design of smart nanodevices largely depends on the accuracy by which each of the in...
Understanding biomolecular information at the single-molecule level requires tools for manipulating ...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
Current in vitro techniques cannot accurately identify small differences in concentration in samples...
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...
DNA has been selected by millennia of evolution as the primary molecule that carries, preserves and ...
The sensing and characterisation of biomolecules is crucial for medical diagnostics and an understan...
DNA, traditionally known as the carrier of genetic information has proven that it can be utilized as...
The DNA Curtains assay is a recently developed experimental platform for protein-DNA interaction stu...
The advent of personalized medicine will require biosensors capable of reliably detecting small leve...
The goal of my research program is to develop a DNA-based nanosensor for nucleic acids analysis. I p...
The biofunctionalization of nanopatterned surfaces with DNA origami nanostructures is an important t...
A central question in DNA biosensors is how the surface structure impact the molecular recognition, ...
The bottom-up design of smart nanodevices largely depends on the accuracy by which each of the inher...
8siThe bottom-up design of smart nanodevices largely depends on the accuracy by which each of the in...
Understanding biomolecular information at the single-molecule level requires tools for manipulating ...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
Current in vitro techniques cannot accurately identify small differences in concentration in samples...
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...
DNA has been selected by millennia of evolution as the primary molecule that carries, preserves and ...
The sensing and characterisation of biomolecules is crucial for medical diagnostics and an understan...
DNA, traditionally known as the carrier of genetic information has proven that it can be utilized as...
The DNA Curtains assay is a recently developed experimental platform for protein-DNA interaction stu...
The advent of personalized medicine will require biosensors capable of reliably detecting small leve...
The goal of my research program is to develop a DNA-based nanosensor for nucleic acids analysis. I p...
The biofunctionalization of nanopatterned surfaces with DNA origami nanostructures is an important t...
A central question in DNA biosensors is how the surface structure impact the molecular recognition, ...