The incorporation of cholesterol into dipalmitoylphosphatidylcholine (DPPC) membranes, even in small amounts, has been shown to significantly alter the properties of the membrane. In this work, force–distance interaction profiles of DPPC membranes containing 8 mol % cholesterol obtained using the surface force apparatus are analyzed in the context of high-resolution structural characterization by atomic force microscopy and neutron reflectometry. The adhesion between the mixed membranes was greater than that for pure DPPC and was variabledepending on the number of defects in the outer membrane leaflets. These defects were only detectable by atomic force microscopy and had an average size of 230 ± 30 nm and 1–5% surface density in the outer...
In this paper, we study the interaction of charged polymers with solid-supported 1,2-dimyristoyl-sn-...
The vertical location of 30 mol % cholesterol in a hydrated dimyristoylphosphatidylcholine (DMPC) me...
AbstractBiological membranes define not only the cell boundaries but any compartment within the cell...
The incorporation of cholesterol into dipalmitoylphosphatidylcholine (DPPC) membranes, even in small...
The effect of cholesterol (CHOL) on the material properties of supported lipid bilayers composed of ...
Lipid composition and cholesterol (Chol) content in the eye lens membrane changes dramatically with ...
Cellular membranes containing sphingolipids and cholesterol have been shown to self-organize into li...
International audienceIn many liposome applications, the nanomechanical properties of the membrane e...
金沢大学フロンティアサイエンス機構Cholesterols play key roles in controlling molecular fluidity in a biological membr...
Interaction forces and topography of mixed phospholipid-glycolipid bilayers were investigated by ato...
Cell membranes are typically very complex, consisting of a multitude of different lipids and protein...
Biological membranes mediate several biological processes that are directly associated with their ph...
ABSTRACT The nanomechanical response of supported lipid bilayers has been studied by force spectrosc...
AbstractPhospholipid bilayers were studied by means of atomic force microscopy (AFM) and a surface f...
International audienceBiological membranes define not only the cell boundaries but any compartment w...
In this paper, we study the interaction of charged polymers with solid-supported 1,2-dimyristoyl-sn-...
The vertical location of 30 mol % cholesterol in a hydrated dimyristoylphosphatidylcholine (DMPC) me...
AbstractBiological membranes define not only the cell boundaries but any compartment within the cell...
The incorporation of cholesterol into dipalmitoylphosphatidylcholine (DPPC) membranes, even in small...
The effect of cholesterol (CHOL) on the material properties of supported lipid bilayers composed of ...
Lipid composition and cholesterol (Chol) content in the eye lens membrane changes dramatically with ...
Cellular membranes containing sphingolipids and cholesterol have been shown to self-organize into li...
International audienceIn many liposome applications, the nanomechanical properties of the membrane e...
金沢大学フロンティアサイエンス機構Cholesterols play key roles in controlling molecular fluidity in a biological membr...
Interaction forces and topography of mixed phospholipid-glycolipid bilayers were investigated by ato...
Cell membranes are typically very complex, consisting of a multitude of different lipids and protein...
Biological membranes mediate several biological processes that are directly associated with their ph...
ABSTRACT The nanomechanical response of supported lipid bilayers has been studied by force spectrosc...
AbstractPhospholipid bilayers were studied by means of atomic force microscopy (AFM) and a surface f...
International audienceBiological membranes define not only the cell boundaries but any compartment w...
In this paper, we study the interaction of charged polymers with solid-supported 1,2-dimyristoyl-sn-...
The vertical location of 30 mol % cholesterol in a hydrated dimyristoylphosphatidylcholine (DMPC) me...
AbstractBiological membranes define not only the cell boundaries but any compartment within the cell...