AbstractSmall ligands and their receptors are widely used non-covalent couplers in various biotech applications. One prominent example, the digoxigenin–antibody complex, was often used to immobilize samples for single molecule force measurements by optical trap or AFM. Here, we employed dynamic AFM spectroscopy to demonstrate that a single digoxigenin–antibody bond is likely to fail even under moderate loading rates. This effect potentially could lower the yield of measurements or even obscure the unbinding data of the sample by the rupture events of the coupler. Immobilization by multiple antibody–antigen bonds, therefore, is highly recommended. The analysis of our data revealed a pronounced loading rate dependence of the rupture force, wh...
AbstractIn dynamic force spectroscopy, a (bio-)molecular complex is subjected to a steadily increasi...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...
AbstractSmall ligands and their receptors are widely used non-covalent couplers in various biotech a...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Raible M, Evstigneev M, Reimann P, Bartels FW, Ros R. Theoretical analysis of dynamic force spectros...
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 ...
Atomic force microscope based single-molecule force spectroscopy provides a description of a variety...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...
International audienceReceptor-ligand interactions are essential for biological function and their b...
Receptor-ligand interactions are essential for biological function and their binding strength is com...
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...
Force spectroscopy measurements of the rupture of the molecular bond between biotin and streptavidin...
AbstractIn dynamic force spectroscopy, a (bio-)molecular complex is subjected to a steadily increasi...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...
AbstractSmall ligands and their receptors are widely used non-covalent couplers in various biotech a...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Raible M, Evstigneev M, Reimann P, Bartels FW, Ros R. Theoretical analysis of dynamic force spectros...
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 ...
Atomic force microscope based single-molecule force spectroscopy provides a description of a variety...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...
International audienceReceptor-ligand interactions are essential for biological function and their b...
Receptor-ligand interactions are essential for biological function and their binding strength is com...
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...
Force spectroscopy measurements of the rupture of the molecular bond between biotin and streptavidin...
AbstractIn dynamic force spectroscopy, a (bio-)molecular complex is subjected to a steadily increasi...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...