Single-molecule force spectroscopy techniques are powerful tools for investigating the mechanical unfolding of biomolecules. However, they are limited in throughput and require dedicated instrumentation. Here, we report a force-generating particle that can unfold target molecules on-demand. The particle consists of a plasmonic nanorod core encapsulated with a thermoresponsive polymer shell. Optical heating of the nanorod leads to rapid collapse of the polymer, thus transducing light into mechanical work to unfold target molecules. The illumination tunes the duration and degree of particle collapse, thus controlling the lifetime and magnitude of applied forces. Single-molecule fluorescence imaging showed reproducible mechanical unfolding of ...
We describe a novel method by which it is possible to apply and measure torque directly on particles...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Traditionally, adhesion interactions have been studied in reversible equilibrium conditions. Howeve...
Single-molecule force spectroscopy techniques are powerful tools for investigating the mechanical un...
The ability to measure and manipulate single molecules has greatly advanced the field of biophysics....
The ability to measure and manipulate single molecules has greatly advanced the field of biophysics....
Nanoactuators and nanomachines have long been sought after, but key bottlenecks remain. Forces at su...
An increasing number of inter- and intramolecular interactions can nowadays be probed using single-m...
The ability to measure and manipulate single molecules has greatly advanced the field of biophysics....
Light-powered molecular machines are conjectured to be essential constituents of future nanoscale de...
Weak mechanical forces acting on molecules are in control of a wide variety of (bio)chemical and phy...
Nanoactuators and nanomachines have long been sought after, but key bottlenecks remain. Forces at su...
Single molecule force clamp experiments are widely used to investigate how enzymes, molecular motors...
AbstractSingle molecule force spectroscopy methods, such as optical and magnetic tweezers and atomic...
We have developed a nanoscopic force sensor with optical readout. The sensor consists of a single-st...
We describe a novel method by which it is possible to apply and measure torque directly on particles...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Traditionally, adhesion interactions have been studied in reversible equilibrium conditions. Howeve...
Single-molecule force spectroscopy techniques are powerful tools for investigating the mechanical un...
The ability to measure and manipulate single molecules has greatly advanced the field of biophysics....
The ability to measure and manipulate single molecules has greatly advanced the field of biophysics....
Nanoactuators and nanomachines have long been sought after, but key bottlenecks remain. Forces at su...
An increasing number of inter- and intramolecular interactions can nowadays be probed using single-m...
The ability to measure and manipulate single molecules has greatly advanced the field of biophysics....
Light-powered molecular machines are conjectured to be essential constituents of future nanoscale de...
Weak mechanical forces acting on molecules are in control of a wide variety of (bio)chemical and phy...
Nanoactuators and nanomachines have long been sought after, but key bottlenecks remain. Forces at su...
Single molecule force clamp experiments are widely used to investigate how enzymes, molecular motors...
AbstractSingle molecule force spectroscopy methods, such as optical and magnetic tweezers and atomic...
We have developed a nanoscopic force sensor with optical readout. The sensor consists of a single-st...
We describe a novel method by which it is possible to apply and measure torque directly on particles...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Traditionally, adhesion interactions have been studied in reversible equilibrium conditions. Howeve...