AbstractCharacterization of molecular dynamics on living cell membranes at the nanoscale is fundamental to unravel the mechanisms of membrane organization and compartmentalization. Here we demonstrate the feasibility of fluorescence correlation spectroscopy (FCS) based on the nanometric illumination of near-field scanning optical microscopy (NSOM) probes on intact living cells. NSOM-FCS applied to fluorescent lipid analogs allowed us to reveal details of the diffusion hidden by larger illumination areas. Moreover, the technique offers the unique advantages of evanescent axial illumination and straightforward implementation of multiple color excitation. As such, NSOM-FCS represents a powerful tool to study a variety of dynamic processes occu...
The study of molecular dynamics at the single-molecule level with fluorescence correlation spectrosc...
Near-field optical probes have been used to produce a subdiffraction-limited observation area for fl...
The diffusion dynamics in the cellular plasma membrane provide crucial insights into molecular inter...
AbstractCharacterization of molecular dynamics on living cell membranes at the nanoscale is fundamen...
We report fluorescence correlation spectroscopy (FCS) measurements using near-field scanning optical...
Molecular membrane dynamics in living cells are often obscured from the observer because of the limi...
AbstractWe describe the development of a new methodology to probe the plasma membrane organization o...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
Details of molecular membrane dynamics in living cells such as lipid protein interactions or the inc...
Details of molecular membrane dynamics in living cells such as lipid-protein interactions or the inc...
AbstractTo probe the complexity of the cell membrane organization and dynamics, it is important to o...
AbstractFor many years, it was believed that the laws of diffraction set a fundamental limit to the ...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
International audienceDynamic biological processes in living cells, including those associated with ...
International audienceCell membranes actively participate in numerous cellular functions. Inasmuch a...
The study of molecular dynamics at the single-molecule level with fluorescence correlation spectrosc...
Near-field optical probes have been used to produce a subdiffraction-limited observation area for fl...
The diffusion dynamics in the cellular plasma membrane provide crucial insights into molecular inter...
AbstractCharacterization of molecular dynamics on living cell membranes at the nanoscale is fundamen...
We report fluorescence correlation spectroscopy (FCS) measurements using near-field scanning optical...
Molecular membrane dynamics in living cells are often obscured from the observer because of the limi...
AbstractWe describe the development of a new methodology to probe the plasma membrane organization o...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
Details of molecular membrane dynamics in living cells such as lipid protein interactions or the inc...
Details of molecular membrane dynamics in living cells such as lipid-protein interactions or the inc...
AbstractTo probe the complexity of the cell membrane organization and dynamics, it is important to o...
AbstractFor many years, it was believed that the laws of diffraction set a fundamental limit to the ...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
International audienceDynamic biological processes in living cells, including those associated with ...
International audienceCell membranes actively participate in numerous cellular functions. Inasmuch a...
The study of molecular dynamics at the single-molecule level with fluorescence correlation spectrosc...
Near-field optical probes have been used to produce a subdiffraction-limited observation area for fl...
The diffusion dynamics in the cellular plasma membrane provide crucial insights into molecular inter...