Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lipid rafts, play a crucial role in facilitating a broad range of important cell functions. Whereas on living cell membranes lipid rafts have been postulated to have nanoscopic dimensions and to be highly transient, the existence of a similar type of dynamic nanodomains in multicomponent lipid bilayers has been questioned. Here, we perform fluorescence correlation spectroscopy on planar plasmonic antenna arrays with different nanogap sizes to assess the dynamic nanoscale organization of mimetic biological membranes. Our approach takes advantage of the highly enhanced and confined excitation light provided by the nanoantennas together with their ...
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...
Dynamic heterogeneity (DH) at nanoscale due to lipid-lipid and/or lipid-protein interactions in cell...
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...
International audienceNanoscale membrane assemblies of sphingolipids, cholesterol and certain protei...
International audienceNanoscale membrane assemblies of sphingolipids, cholesterol and certain protei...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
International audienceThe plasma membrane of living cells is compartmentalized at multiple spatial s...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
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...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
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...
Dynamic heterogeneity (DH) at nanoscale due to lipid-lipid and/or lipid-protein interactions in cell...
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...
International audienceNanoscale membrane assemblies of sphingolipids, cholesterol and certain protei...
International audienceNanoscale membrane assemblies of sphingolipids, cholesterol and certain protei...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
International audienceThe plasma membrane of living cells is compartmentalized at multiple spatial s...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
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...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
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...
Dynamic heterogeneity (DH) at nanoscale due to lipid-lipid and/or lipid-protein interactions in cell...