We present a miniature centrifuge force microscope (CFM) that repurposes a benchtop centrifuge for high-throughput single-molecule experiments with high-resolution particle tracking, a large force range, temperature control and simple push-button operation. Incorporating DNA nanoswitches to enable repeated interrogation by force of single molecular pairs, we demonstrate increased throughput, reliability and the ability to characterize population heterogeneity. We perform spatiotemporally multiplexed experiments to collect 1,863 bond rupture statistics from 538 traceable molecular pairs in a single experiment, and show that 2 populations of DNA zippers can be distinguished using per-molecule statistics to reduce noise
Single-molecule (SM) techniques have been contributing to unraveling the detailed mechanisms underly...
DNA has become a powerful platform to design functional nanodevices. DNA nanodevices are often compo...
Enhancing the short-term force precision of atomic force microscopy (AFM) while maintaining excellen...
AbstractPrecise manipulation of single molecules has already led to remarkable insights in physics, ...
DNA base stacking is thought to play a critical role in the stability of nucleic acid structures. In...
The single-molecule approach seeks to understand molecular mechanisms by observing biomolecular proc...
Single-molecule force spectroscopy has brought many new insights into nanoscale biology, from the fu...
The application of forces and torques on the single molecule level has transformed our understanding...
Several techniques have been established to quantify the mechanicals of single molecules. However, m...
AbstractThe need for low-cost DNA sequence detection in clinical applications is driving development...
ABSTRACT The need for low-cost DNA sequence detection in clinical applications is driving developmen...
Single-molecule experiments provide a unique means for real-time observation of the activity of indi...
Single-molecule force spectroscopy often refers to the measurement of the enzymatic activities coupl...
Presented on October 6, 2010 from 4-5 pm in room G011 of the Molecular Science and Engineering Build...
Cytoskeletal motors transform chemical energy into mechanical work to drive essential cellular funct...
Single-molecule (SM) techniques have been contributing to unraveling the detailed mechanisms underly...
DNA has become a powerful platform to design functional nanodevices. DNA nanodevices are often compo...
Enhancing the short-term force precision of atomic force microscopy (AFM) while maintaining excellen...
AbstractPrecise manipulation of single molecules has already led to remarkable insights in physics, ...
DNA base stacking is thought to play a critical role in the stability of nucleic acid structures. In...
The single-molecule approach seeks to understand molecular mechanisms by observing biomolecular proc...
Single-molecule force spectroscopy has brought many new insights into nanoscale biology, from the fu...
The application of forces and torques on the single molecule level has transformed our understanding...
Several techniques have been established to quantify the mechanicals of single molecules. However, m...
AbstractThe need for low-cost DNA sequence detection in clinical applications is driving development...
ABSTRACT The need for low-cost DNA sequence detection in clinical applications is driving developmen...
Single-molecule experiments provide a unique means for real-time observation of the activity of indi...
Single-molecule force spectroscopy often refers to the measurement of the enzymatic activities coupl...
Presented on October 6, 2010 from 4-5 pm in room G011 of the Molecular Science and Engineering Build...
Cytoskeletal motors transform chemical energy into mechanical work to drive essential cellular funct...
Single-molecule (SM) techniques have been contributing to unraveling the detailed mechanisms underly...
DNA has become a powerful platform to design functional nanodevices. DNA nanodevices are often compo...
Enhancing the short-term force precision of atomic force microscopy (AFM) while maintaining excellen...