A spectroscopic technique is presented that is able to identify rapid changes in the bending modulus and fluidity of vesicle lipid bilayers on the micrometer scale, and distinguish between the presence and absence of heterogeneities in lipid-packing order. Individual unilamellar vesicles have been isolated using laser tweezers and, by measuring the intensity modulation of elastic back-scattered light, changes in the biophysical properties of lipid bilayers were revealed. Our approach offers unprecedented temporal resolution and, uniquely, physical transformations of lipid bilayers can be monitored on a length scale of micrometers. As an example, the deformation of a membrane bilayer following the gel-to-fluid phase transition in a pure phos...
There is accumulating evidence that the small-scale lateral organization of biological membranes has...
Supported lipid bilayers (SLB) are frequently used to study processes associated with or mediated by...
AbstractUsing the sectioning effect of the two-photon fluorescence microscope, we studied the behavi...
Highly charged vesicles of the saturated anionic lipid dimyristoyl phosphatidylglycerol (DMPG) in lo...
The knowledge of the elasticity of lipid bilayer structures is fundamental for new developments in b...
In the present paper, we apply the dynamic laser light scattering technique to investigate the depen...
The laser light scattering technique can be used in a nonconventional fashion to study dynamic prope...
AbstractHighly charged vesicles of the saturated anionic lipid dimyristoyl phosphatidylglycerol (DMP...
Optical tweezing can be used to isolate single, micrometre sized particles. This is facilitated by a...
Using the sectioning effect of the two-photon fluorescence microscope, we studied the behavior of ph...
Supported lipid bilayers (SLB) are frequently used to study processes associated with or mediated by...
ABSTRACT Using the sectioning effect of the two-photon fluorescence microscope, we studied the behav...
We used a technique that allows us to visualize local and morphological changes of the membrane of m...
There is accumulating evidence that the small-scale lateral organization of biological membranes has...
Supported lipid bilayers (SLB) are frequently used to study processes associated with or mediated by...
AbstractUsing the sectioning effect of the two-photon fluorescence microscope, we studied the behavi...
Highly charged vesicles of the saturated anionic lipid dimyristoyl phosphatidylglycerol (DMPG) in lo...
The knowledge of the elasticity of lipid bilayer structures is fundamental for new developments in b...
In the present paper, we apply the dynamic laser light scattering technique to investigate the depen...
The laser light scattering technique can be used in a nonconventional fashion to study dynamic prope...
AbstractHighly charged vesicles of the saturated anionic lipid dimyristoyl phosphatidylglycerol (DMP...
Optical tweezing can be used to isolate single, micrometre sized particles. This is facilitated by a...
Using the sectioning effect of the two-photon fluorescence microscope, we studied the behavior of ph...
Supported lipid bilayers (SLB) are frequently used to study processes associated with or mediated by...
ABSTRACT Using the sectioning effect of the two-photon fluorescence microscope, we studied the behav...
We used a technique that allows us to visualize local and morphological changes of the membrane of m...
There is accumulating evidence that the small-scale lateral organization of biological membranes has...
Supported lipid bilayers (SLB) are frequently used to study processes associated with or mediated by...
AbstractUsing the sectioning effect of the two-photon fluorescence microscope, we studied the behavi...