Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two molecules such as ligand-receptor pairs at the single-molecule level. In the DFS method based on the Bell-Evans model, the unbinding force applied to a molecular bond is increased at a constant rate, and the force required to rupture the molecular bond is measured. By analyzing the relationship between the modal rupture force and the logarithm of the loading rate, microscopic potential barrier landscapes and the lifetimes of bonds can be obtained. However, the results obtained, for example, in the case of streptavidin/biotin complexes, have differed among previous studies and some results have been inconsistent with theoretical predictions. I...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
Raible M, Evstigneev M, Reimann P, Bartels FW, Ros R. Theoretical analysis of dynamic force spectros...
AbstractIn dynamic force spectroscopy, a (bio-)molecular complex is subjected to a steadily increasi...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
To understand and design molecular functions on the basis of molecular recognition processes, the mi...
Atomic force microscope based single-molecule force spectroscopy provides a description of a variety...
To understand and design molecular functions on the basis of molecular recognition processes, the mi...
We probe the dynamic strength of multiple biotin-streptavidin adhesion bonds under linear loading us...
Fuhrmann A, Anselmetti D, Ros R, Getfert S, Reimann P. Refined procedure of evaluating experimental ...
AbstractSmall ligands and their receptors are widely used non-covalent couplers in various biotech a...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
The forced rupture of single chemical bonds in biomolecular compounds (e.g. ligand–receptor systems)...
International audienceDynamic force spectroscopy (DFS), using atomic force microscopy (AFM), is a po...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
Raible M, Evstigneev M, Reimann P, Bartels FW, Ros R. Theoretical analysis of dynamic force spectros...
AbstractIn dynamic force spectroscopy, a (bio-)molecular complex is subjected to a steadily increasi...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
To understand and design molecular functions on the basis of molecular recognition processes, the mi...
Atomic force microscope based single-molecule force spectroscopy provides a description of a variety...
To understand and design molecular functions on the basis of molecular recognition processes, the mi...
We probe the dynamic strength of multiple biotin-streptavidin adhesion bonds under linear loading us...
Fuhrmann A, Anselmetti D, Ros R, Getfert S, Reimann P. Refined procedure of evaluating experimental ...
AbstractSmall ligands and their receptors are widely used non-covalent couplers in various biotech a...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
The forced rupture of single chemical bonds in biomolecular compounds (e.g. ligand–receptor systems)...
International audienceDynamic force spectroscopy (DFS), using atomic force microscopy (AFM), is a po...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
Raible M, Evstigneev M, Reimann P, Bartels FW, Ros R. Theoretical analysis of dynamic force spectros...
AbstractIn dynamic force spectroscopy, a (bio-)molecular complex is subjected to a steadily increasi...