In this work, we present theoretical and experimental studies of nanofluidic channels as a potential biosensor for measuring rapid protein complex formation. Using the specific properties offered by nanofluidics, such as the decrease of effective diffusion of biomolecules in confined spaces, we are able to monitor the binding affinity of two proteins. We propose a theoretical model describing the concentration profile of proteins in a nanoslit and show that a complex composed by two bound biomolecules induces a wider diffusion profile than a single protein when driven through a nanochannel. To validate this model experimentally, we measured the increase of the fluorescent diffusion profile when specific biotinylated dextran was added to flu...
Within the complex milieu of a cell, which comprises a large number of different biomolecules, inter...
AbstractWe use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenome...
Proteins embedded in biological membranes perform essential functions in all organisms, serving as r...
In this work, we present theoretical and experimental studies of nanofluidic channels as a potential...
With fluorescence correlation spectroscopy (FCS), the diffusion and concentration of proteins (wheat...
AbstractTransport of proteins in liquid-filled nanometer-sized apertures with charged surfaces based...
Fluorescence correlation spectroscopy allows investigating the interaction of charged proteins with ...
AbstractTransport of proteins in liquid-filled nanometer-sized apertures with charged surfaces based...
Protein-protein interactions are of central importance in biological systems. The interplay between...
The diffusivity of a biological molecule depends not only on its structure and size, but also on its...
The diffusivity of a biological molecule depends not only on its structure and size, but also on its...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
AbstractWe use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenome...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
Within the complex milieu of a cell, which comprises a large number of different biomolecules, inter...
AbstractWe use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenome...
Proteins embedded in biological membranes perform essential functions in all organisms, serving as r...
In this work, we present theoretical and experimental studies of nanofluidic channels as a potential...
With fluorescence correlation spectroscopy (FCS), the diffusion and concentration of proteins (wheat...
AbstractTransport of proteins in liquid-filled nanometer-sized apertures with charged surfaces based...
Fluorescence correlation spectroscopy allows investigating the interaction of charged proteins with ...
AbstractTransport of proteins in liquid-filled nanometer-sized apertures with charged surfaces based...
Protein-protein interactions are of central importance in biological systems. The interplay between...
The diffusivity of a biological molecule depends not only on its structure and size, but also on its...
The diffusivity of a biological molecule depends not only on its structure and size, but also on its...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
AbstractWe use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenome...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
We use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenomena in na...
Within the complex milieu of a cell, which comprises a large number of different biomolecules, inter...
AbstractWe use Molecular Dynamics and Monte Carlo simulations to examine molecular transport phenome...
Proteins embedded in biological membranes perform essential functions in all organisms, serving as r...