A supported lipid bilayer (SLB) is a versatile platform for examining the dynamical properties of biomembranes. However, the effect of a prerequisite solid substrate on the dynamics of a SLB remains very elusive. Especially, it is not clarified how the diffusivity of each leaflet in a SLB is affected by the SLB–solid substrate interaction. In this study, we applied two-dimensional fluorescence lifetime correlation spectroscopy to a SLB for elucidating the diffusion of lipids in the proximal and distal leaflets of a SLB. We find that the autocorrelation curve of a fluorescent lipid in the proximal leaflet decays more slowly than that in the distal leaflet, meaning that the proximal leaflet is less diffusive. This result indicates stronger in...
Heterogeneous diffusion dynamics of molecules play an important role in many cellular signaling even...
The diffusion law of DMPC and DPPC in Supported Lipid Bilayers (SLB), on different substrates, has b...
The diffusion law of DMPC and DPPC in Supported Lipid Bilayers (SLB), on different substrates, has b...
Supported Lipid Bilayers (SLBs) are versatile models capable of mimicking some of the key properties...
Diffusion in lipid membranes is an essential component of many cellular process and fluorescence a m...
Lipid lateral diffusion in membrane bilayers is a fundamental process exploited by cells to enable c...
The translational diffusion coefficient (D) of lipids located in the outer and inner leaflets of pla...
AbstractInvestigation of lipid lateral mobility in biological membranes and their artificial models ...
Diffusion is the most fundamental process of molecular transport in cell membranes and an important ...
The translational diffusion of phospholipids in supported fluid bilayers splits into two populations...
AbstractThe formation of biomimetic lipid membranes has the potential to provide insights into cellu...
AbstractWe report the detection of heterogeneities in the diffusion of lipid molecules for the three...
Heterogeneous diffusion dynamics of molecules play an important role in many cellular signaling even...
Heterogeneous diffusion dynamics of molecules play an important role in many cellular signaling even...
Lateral segregation in model lipid and cell membranes has been widely documented during these last d...
Heterogeneous diffusion dynamics of molecules play an important role in many cellular signaling even...
The diffusion law of DMPC and DPPC in Supported Lipid Bilayers (SLB), on different substrates, has b...
The diffusion law of DMPC and DPPC in Supported Lipid Bilayers (SLB), on different substrates, has b...
Supported Lipid Bilayers (SLBs) are versatile models capable of mimicking some of the key properties...
Diffusion in lipid membranes is an essential component of many cellular process and fluorescence a m...
Lipid lateral diffusion in membrane bilayers is a fundamental process exploited by cells to enable c...
The translational diffusion coefficient (D) of lipids located in the outer and inner leaflets of pla...
AbstractInvestigation of lipid lateral mobility in biological membranes and their artificial models ...
Diffusion is the most fundamental process of molecular transport in cell membranes and an important ...
The translational diffusion of phospholipids in supported fluid bilayers splits into two populations...
AbstractThe formation of biomimetic lipid membranes has the potential to provide insights into cellu...
AbstractWe report the detection of heterogeneities in the diffusion of lipid molecules for the three...
Heterogeneous diffusion dynamics of molecules play an important role in many cellular signaling even...
Heterogeneous diffusion dynamics of molecules play an important role in many cellular signaling even...
Lateral segregation in model lipid and cell membranes has been widely documented during these last d...
Heterogeneous diffusion dynamics of molecules play an important role in many cellular signaling even...
The diffusion law of DMPC and DPPC in Supported Lipid Bilayers (SLB), on different substrates, has b...
The diffusion law of DMPC and DPPC in Supported Lipid Bilayers (SLB), on different substrates, has b...