The phase behavior of the coarse-grained MARTINI model for three-component lipid bilayers composed of dipalmytoyl-phosphatidylcholine (DPPC), cholesterol (Chol), and an unsaturated phosphatidylcholine (PC) was systematically investigated by molecular dynamics simulations. The aim of this study is to understand which types of unsaturated PC induce the formation of thermodynamically stable coexisting phases when added to mixtures of DPPC and Chol and to unravel the mechanisms that drive phase separation in such three-component mixtures. Our simulations indicate that the currently used MARTINI force field does not induce such phase separation in mixtures of DPPC, Chol, and unsaturated PCs with a low unsaturation level, such as palmitoyl-oleoyl...
AbstractThe phase stability of a fluid lipid bilayer composed of a mixture of DC18PC, (DSPC), and a ...
The capability of coarse-grained models based on the MARTINI mapping to reproduce the gel-liquid pha...
The nonideal mixing of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoserine, (16:0, 18:1)PS, and 1,2-dido...
The phase behavior of the coarse-grained MARTINI model for three-component lipid bilayers composed o...
Whether lipid rafts are present in the membranes of living cells remains hotly disputed despite thei...
The lipid mixture of DPPC (saturated lipid)/DUPC (unsaturated lipid)/CHOL (cholesterol) is studied w...
Saturated phospholipids, unsaturated phospholipids, and cholesterol are essential components of cell...
The phase separation in lipid bilayers that include negatively charged lipids is examined experiment...
A molecular model is proposed of a bilayer consisting of fully saturated DPPC and mono unsaturated D...
AbstractA pair of recent studies has reopened debate on the subject of phase separations in model bi...
We extend LIME, an intermediate resolution, implicit solvent model for phospholipids previously used...
Simplified lipid mixtures are often used to model the complex behavior of the cell plasma membrane. ...
Understanding the (de)mixing behavior of multicomponent lipid bilayers is an important step toward ...
Previous studies have found that incorporating monopalmitoylphosphatidylcholine(MPPC) lysolipids int...
AbstractWe describe quantitatively the interactions in a mixture of a saturated and an unsaturated p...
AbstractThe phase stability of a fluid lipid bilayer composed of a mixture of DC18PC, (DSPC), and a ...
The capability of coarse-grained models based on the MARTINI mapping to reproduce the gel-liquid pha...
The nonideal mixing of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoserine, (16:0, 18:1)PS, and 1,2-dido...
The phase behavior of the coarse-grained MARTINI model for three-component lipid bilayers composed o...
Whether lipid rafts are present in the membranes of living cells remains hotly disputed despite thei...
The lipid mixture of DPPC (saturated lipid)/DUPC (unsaturated lipid)/CHOL (cholesterol) is studied w...
Saturated phospholipids, unsaturated phospholipids, and cholesterol are essential components of cell...
The phase separation in lipid bilayers that include negatively charged lipids is examined experiment...
A molecular model is proposed of a bilayer consisting of fully saturated DPPC and mono unsaturated D...
AbstractA pair of recent studies has reopened debate on the subject of phase separations in model bi...
We extend LIME, an intermediate resolution, implicit solvent model for phospholipids previously used...
Simplified lipid mixtures are often used to model the complex behavior of the cell plasma membrane. ...
Understanding the (de)mixing behavior of multicomponent lipid bilayers is an important step toward ...
Previous studies have found that incorporating monopalmitoylphosphatidylcholine(MPPC) lysolipids int...
AbstractWe describe quantitatively the interactions in a mixture of a saturated and an unsaturated p...
AbstractThe phase stability of a fluid lipid bilayer composed of a mixture of DC18PC, (DSPC), and a ...
The capability of coarse-grained models based on the MARTINI mapping to reproduce the gel-liquid pha...
The nonideal mixing of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoserine, (16:0, 18:1)PS, and 1,2-dido...