Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecule detection sensitivity at biological relevant conditions. This innovative approach to breach the diffraction limit offers a versatile platform to investigate the dynamics of individual biomolecules in living cell membranes and their partitioning into cholesterol-dependent lipid nanodomains. Here, we present optical nanoantenna arrays with accessible surface hotspots to study the characteristic diffusion dynamics of phosphoethanolamine (PE) and sphingomyelin (SM) in the plasma membrane of living cells at the nanoscale. Fluorescence burst analysis and fluorescence correlation spectroscopy performed on nanoantennas of different gap sizes show t...
International audienceThe plasma membrane of living cells is compartmentalized at multiple spatial s...
Despite more than 20 years of work since the lipid raft concept was proposed, the existence of these...
Single-molecule fluorescence spectroscopy has revolutionized the field of biophysical sciences by en...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
International audienceOptical nano-antennas can efficiently confine light into nanoscopic hotspots e...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
International audienceThe plasma membrane of living cells is compartmentalized at multiple spatial s...
Despite more than 20 years of work since the lipid raft concept was proposed, the existence of these...
Single-molecule fluorescence spectroscopy has revolutionized the field of biophysical sciences by en...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
International audienceOptical nano-antennas can efficiently confine light into nanoscopic hotspots e...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
International audienceThe plasma membrane of living cells is compartmentalized at multiple spatial s...
Despite more than 20 years of work since the lipid raft concept was proposed, the existence of these...
Single-molecule fluorescence spectroscopy has revolutionized the field of biophysical sciences by en...