Bilayer membranes in the fluid state exhibit a large resistance to changes in surface area, negligible resistance to surface shear deformation, and a small but finite resistance to bending. The presence of cholesterol in the membrane is known to increase its resistance to area dilation. In this report, a new method for measuring bilayer membrane bending stiffness has been used to investigate the effect of cholesterol on the bending rigidity of SOPC (1,stearoyl-2,oleoyl-phosphatidylcholine) membranes. The curvature elasticity (kc) for membranes saturated with cholesterol was measured to be 3.3 x 10(-19) J, approximately 3-fold larger than that the modulus for cholesterol-free SOPC membrane. These findings are consistent with previous measure...
AbstractBilayers composed of phosphatidylcholine (PC), sphingomyelin (SM), and cholesterol (CHOL) ar...
We present high precision measurements of the bending elastic moduli for bilayers of a variety of di...
We report the modification of the bending elastic modulus $k_{\rm c}$ of lipid bilayers (here DMPC) ...
Giant liposomes obtained by electroformation and observed by phase-contrast video microscopy show sp...
The behavior of dioleoylphosphatidylethanolamine (DOPE)/cholesterol/tetradecane and dioleoylphosphat...
Giant bilayer vesicles were reconstituted from several lipids and lipid/cholesterol (CHOL) mixtures:...
The curvature elastic modulus (bending stiffness) of stearoyloleoyl phosphatidylcholine (SOPC) bilay...
Bilayer membranes exhibit an elastic resistance to changes in curvature. This resistance depends bot...
To describe the resistance of a bilayer to changes in curvature two mechanisms are distinguished whi...
The effects of cholesterol on membrane bending modulus KC, membrane thickness DHH, the partial and a...
Pure bending of a membrane bilayer is developed including different properties for each membrane hal...
AbstractThe effect of incorporation of 3–43 mol% sterol on the lipid order and bilayer rigidity has ...
Kakorin S, Brinkmann U, Neumann E. Cholesterol reduces membrane electroporation and electric deforma...
Two formulations of the intrinsic bending elasticity of lipid bilayers are compared which are based ...
AbstractCellular and organellar membranes are dynamic materials that underlie many aspects of cell b...
AbstractBilayers composed of phosphatidylcholine (PC), sphingomyelin (SM), and cholesterol (CHOL) ar...
We present high precision measurements of the bending elastic moduli for bilayers of a variety of di...
We report the modification of the bending elastic modulus $k_{\rm c}$ of lipid bilayers (here DMPC) ...
Giant liposomes obtained by electroformation and observed by phase-contrast video microscopy show sp...
The behavior of dioleoylphosphatidylethanolamine (DOPE)/cholesterol/tetradecane and dioleoylphosphat...
Giant bilayer vesicles were reconstituted from several lipids and lipid/cholesterol (CHOL) mixtures:...
The curvature elastic modulus (bending stiffness) of stearoyloleoyl phosphatidylcholine (SOPC) bilay...
Bilayer membranes exhibit an elastic resistance to changes in curvature. This resistance depends bot...
To describe the resistance of a bilayer to changes in curvature two mechanisms are distinguished whi...
The effects of cholesterol on membrane bending modulus KC, membrane thickness DHH, the partial and a...
Pure bending of a membrane bilayer is developed including different properties for each membrane hal...
AbstractThe effect of incorporation of 3–43 mol% sterol on the lipid order and bilayer rigidity has ...
Kakorin S, Brinkmann U, Neumann E. Cholesterol reduces membrane electroporation and electric deforma...
Two formulations of the intrinsic bending elasticity of lipid bilayers are compared which are based ...
AbstractCellular and organellar membranes are dynamic materials that underlie many aspects of cell b...
AbstractBilayers composed of phosphatidylcholine (PC), sphingomyelin (SM), and cholesterol (CHOL) ar...
We present high precision measurements of the bending elastic moduli for bilayers of a variety of di...
We report the modification of the bending elastic modulus $k_{\rm c}$ of lipid bilayers (here DMPC) ...