Single-molecule experiments with optical tweezers have become an important tool to study the properties and mechanisms of biological systems, such as cells and nucleic acids. In particular, force unzipping experiments have been used to extract the thermodynamics and kinetics of folding and unfolding reactions. In hopping experiments, a molecule executes transitions between the unfolded and folded states at a preset value of the force [constant force mode (CFM) under force feedback] or trap position [passive mode (PM) without feedback] and the force-dependent kinetic rates extracted from the lifetime of each state (CFM) and the rupture force distributions (PM) using the Bell-Evans model. However, hopping experiments in the CFM are known to o...
In a typical single-molecule force spectroscopy experiment, the ends of the molecule of interest are...
AbstractSingle-molecule force experiments provide powerful new tools to explore biomolecular interac...
Nanoscale manipulation of individual biomolecules, using such techniques as the atomic force microsc...
Single-molecule experiments with optical tweezers have become an important tool to study the prop-er...
AbstractBy exerting mechanical force, it is possible to unfold/refold RNA molecules one at a time. I...
AbstractMechanical forces exerted by laser tweezers or atomic force microscopes can be used to drive...
Single-molecule experiments provide new insights into biological processes hitherto not accessible b...
AbstractWe investigate unfolding/folding force kinetics in DNA hairpins exhibiting two and three sta...
ABSTRACT Mechanical forces exerted by laser tweezers or atomic force microscopes can be used to driv...
The modelling of single-molecule experiments is of vital interest to gain new insights into processe...
AbstractMechanical unfolding and refolding of single RNA molecules have previously been observed in ...
AbstractSingle-molecule force spectroscopy has provided important insights into the properties and m...
The folding and unfolding kinetics of single molecules, such as proteins or nucleic acids, can be ex...
[eng] In the present thesis, single-molecule experiments have been carried out using optical tweezer...
The sequence-dependent folding landscapes of nucleic acid hairpins reflect much of the complexity of...
In a typical single-molecule force spectroscopy experiment, the ends of the molecule of interest are...
AbstractSingle-molecule force experiments provide powerful new tools to explore biomolecular interac...
Nanoscale manipulation of individual biomolecules, using such techniques as the atomic force microsc...
Single-molecule experiments with optical tweezers have become an important tool to study the prop-er...
AbstractBy exerting mechanical force, it is possible to unfold/refold RNA molecules one at a time. I...
AbstractMechanical forces exerted by laser tweezers or atomic force microscopes can be used to drive...
Single-molecule experiments provide new insights into biological processes hitherto not accessible b...
AbstractWe investigate unfolding/folding force kinetics in DNA hairpins exhibiting two and three sta...
ABSTRACT Mechanical forces exerted by laser tweezers or atomic force microscopes can be used to driv...
The modelling of single-molecule experiments is of vital interest to gain new insights into processe...
AbstractMechanical unfolding and refolding of single RNA molecules have previously been observed in ...
AbstractSingle-molecule force spectroscopy has provided important insights into the properties and m...
The folding and unfolding kinetics of single molecules, such as proteins or nucleic acids, can be ex...
[eng] In the present thesis, single-molecule experiments have been carried out using optical tweezer...
The sequence-dependent folding landscapes of nucleic acid hairpins reflect much of the complexity of...
In a typical single-molecule force spectroscopy experiment, the ends of the molecule of interest are...
AbstractSingle-molecule force experiments provide powerful new tools to explore biomolecular interac...
Nanoscale manipulation of individual biomolecules, using such techniques as the atomic force microsc...