Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodologies enhance single molecule signatures in the absence of any labels but have struggled to demonstrate routine and quantitative single protein detection. Here, we used interferometric scattering microscopy not only to detect but also to image and nanometrically track the motion of single myosin 5a heavy meromyosin molecules without the use of labels or any nanoscopic amplification. Together with the simple experimental arrangement, an intrinsic independence from strong electronic transition dipoles and a detection limit of <60 kDa, our approach paves the way toward nonresonant, label-free sensing and imaging of nanoscopic objects down to th...
AbstractFluorescence detection of single molecules provides a means to investigate protein dynamics ...
We performed a visualization of membrane proteins labeled with 10-nm gold nanoparticles in cells, us...
Physical phenomena such as total internal reflection, scattering and interference, or plasmon resona...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
ABSTRACT: Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmon...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
Our understanding of molecular motor function has been greatly improved by the development of imagin...
Single unmodified biomolecules in solution can be observed and characterized by interferometric imag...
The advent of single-particle tracking and super-resolution imaging techniques have brought forth a ...
: Label-free detection, analysis, and rapid tracking of nanoparticles is crucial for future ultrasen...
Detection of single analyte molecules without the use of any label would improve the sensitivity of ...
The promise and success of current biomedical research is highly dependent on understanding the mech...
Current in vitro optical studies of microtubule dynamics tend to rely on fluorescent labeling of tub...
The ultimate detection limit in analytic chemistry and biology is the single molecule. Commonly, flu...
We apply an interferometric optical detection scheme to image and track unlabeled single virions. In...
AbstractFluorescence detection of single molecules provides a means to investigate protein dynamics ...
We performed a visualization of membrane proteins labeled with 10-nm gold nanoparticles in cells, us...
Physical phenomena such as total internal reflection, scattering and interference, or plasmon resona...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
ABSTRACT: Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmon...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
Our understanding of molecular motor function has been greatly improved by the development of imagin...
Single unmodified biomolecules in solution can be observed and characterized by interferometric imag...
The advent of single-particle tracking and super-resolution imaging techniques have brought forth a ...
: Label-free detection, analysis, and rapid tracking of nanoparticles is crucial for future ultrasen...
Detection of single analyte molecules without the use of any label would improve the sensitivity of ...
The promise and success of current biomedical research is highly dependent on understanding the mech...
Current in vitro optical studies of microtubule dynamics tend to rely on fluorescent labeling of tub...
The ultimate detection limit in analytic chemistry and biology is the single molecule. Commonly, flu...
We apply an interferometric optical detection scheme to image and track unlabeled single virions. In...
AbstractFluorescence detection of single molecules provides a means to investigate protein dynamics ...
We performed a visualization of membrane proteins labeled with 10-nm gold nanoparticles in cells, us...
Physical phenomena such as total internal reflection, scattering and interference, or plasmon resona...