The calculated force-dependent lifetime of the system for the cytoskeleton anchored (red circles) and the membrane tether (green circles) rupture events is shown. Calculated points did not collapse on a master curve as expected for single-exponential molecule kinetics.</p
Force spectroscopy measurements of the rupture of the molecular bond between biotin and streptavidin...
In typical force spectroscopy experiments, a small biomolecule is attached to a soft polymer linker ...
<p>The figure shows the survival curves of binding events recorded between surfaces coated with low ...
The forced rupture of single chemical bonds in biomolecular compounds (e.g. ligand–receptor systems)...
Dynamic force spectroscopy probes the kinetic and thermodynamic properties of single molecules and m...
The loading rate depends on the dynamics of force applied to the bond. Often the loading rate is con...
ABSTRACT. Biological cell adhesion involves specific-molecular bonds to sparsely distributed surface...
<p>(A) A single L-cell expressing Ecad-EGFP is approached onto an E1-5 surface. During substrate con...
AbstractSingle-molecule force spectroscopy is used to probe the kinetics of receptor-ligand bonds by...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
Mechanical breaking of covalent bonds is induced by thermal fluctuations which leads to temperature ...
ABSTRACT The kinetic parameters of single bonds between neural cell adhesion molecules were determin...
AbstractThe kinetic parameters of single bonds between neural cell adhesion molecules were determine...
From left to right, representative AFM raw force spectroscopy data are shown for single cytoskeleton...
The kinetics of receptor-mediated cell adhesion to a ligand-coated surface play a key role in many p...
Force spectroscopy measurements of the rupture of the molecular bond between biotin and streptavidin...
In typical force spectroscopy experiments, a small biomolecule is attached to a soft polymer linker ...
<p>The figure shows the survival curves of binding events recorded between surfaces coated with low ...
The forced rupture of single chemical bonds in biomolecular compounds (e.g. ligand–receptor systems)...
Dynamic force spectroscopy probes the kinetic and thermodynamic properties of single molecules and m...
The loading rate depends on the dynamics of force applied to the bond. Often the loading rate is con...
ABSTRACT. Biological cell adhesion involves specific-molecular bonds to sparsely distributed surface...
<p>(A) A single L-cell expressing Ecad-EGFP is approached onto an E1-5 surface. During substrate con...
AbstractSingle-molecule force spectroscopy is used to probe the kinetics of receptor-ligand bonds by...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
Mechanical breaking of covalent bonds is induced by thermal fluctuations which leads to temperature ...
ABSTRACT The kinetic parameters of single bonds between neural cell adhesion molecules were determin...
AbstractThe kinetic parameters of single bonds between neural cell adhesion molecules were determine...
From left to right, representative AFM raw force spectroscopy data are shown for single cytoskeleton...
The kinetics of receptor-mediated cell adhesion to a ligand-coated surface play a key role in many p...
Force spectroscopy measurements of the rupture of the molecular bond between biotin and streptavidin...
In typical force spectroscopy experiments, a small biomolecule is attached to a soft polymer linker ...
<p>The figure shows the survival curves of binding events recorded between surfaces coated with low ...