Detection of single analyte molecules without the use of any label would improve the sensitivity of current biosensors by orders of magnitude to the ultimate graininess of biological matter. Over two decades, scientists have succeeded in pushing the limits of optical detection to single molecules using fluorescence. However, restrictions in photophysics and labelling protocols make this technique less attractive for biosensing. Recently, mechanisms based on vibrational spectroscopy, photothermal detection, plasmonics and microcavities have been explored for fluorescence-free detection of single biomolecules. Here, we show that interferometric detection of scattering (iSCAT) can achieve this goal in a direct and label-free fashion. In partic...
The promise and success of current biomedical research is highly dependent on understanding the mech...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
The mobility of proteins and lipids within the cell, sculpted oftentimes by the organization of the ...
Detection of single analyte molecules without the use of any label would improve the sensitivity of ...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
ABSTRACT: Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmon...
: Label-free detection, analysis, and rapid tracking of nanoparticles is crucial for future ultrasen...
We demonstrate interferometric scattering (iSCAT) microscopy, a method capable of detecting single u...
Interferometric scattering microscopy (iSCAT) is an extremely sensitive imaging method based on the ...
The characterisation of biomolecular complexes and their interactions is essential for understanding...
It has been shown that interferometric detection of Rayleigh scattering (iSCAT) can reach an exquisi...
Microscopy based on the interferometric detection of light scattered from nanoparticles (iSCAT) was ...
Interferometric scattering (iSCAT) microscopy is a label-free optical method capable of detecting si...
Interferometric scattering microscopy (iSCAT) has emerged in recent years as a highly sensitive imag...
Single unmodified biomolecules in solution can be observed and characterized by interferometric imag...
The promise and success of current biomedical research is highly dependent on understanding the mech...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
The mobility of proteins and lipids within the cell, sculpted oftentimes by the organization of the ...
Detection of single analyte molecules without the use of any label would improve the sensitivity of ...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
ABSTRACT: Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmon...
: Label-free detection, analysis, and rapid tracking of nanoparticles is crucial for future ultrasen...
We demonstrate interferometric scattering (iSCAT) microscopy, a method capable of detecting single u...
Interferometric scattering microscopy (iSCAT) is an extremely sensitive imaging method based on the ...
The characterisation of biomolecular complexes and their interactions is essential for understanding...
It has been shown that interferometric detection of Rayleigh scattering (iSCAT) can reach an exquisi...
Microscopy based on the interferometric detection of light scattered from nanoparticles (iSCAT) was ...
Interferometric scattering (iSCAT) microscopy is a label-free optical method capable of detecting si...
Interferometric scattering microscopy (iSCAT) has emerged in recent years as a highly sensitive imag...
Single unmodified biomolecules in solution can be observed and characterized by interferometric imag...
The promise and success of current biomedical research is highly dependent on understanding the mech...
Optical detection of individual proteins requires fluorescent labeling. Cavity and plasmonic methodo...
The mobility of proteins and lipids within the cell, sculpted oftentimes by the organization of the ...