Phospholipid ternary systems are useful model systems for understanding lipid-lipid interactions and their influence on biological properties such as cell signaling and protein translocation. Despite extensive studies, there are still open questions relating to membrane phase behavior, particularly relating to a proposed state of three-phase coexistence, due to the difficulty in clearly distinguishing the three phases. We look in and around the region of the phase diagram where three phases are expected and use a combination of different atomic force microscopy (AFM) modes to present the first images of three coexisting lipid phases in biomimetic cell lipid membranes. Domains form through either nucleation or spinodal decomposition dependen...
AbstractMixtures of phospholipids with cholesterol are able to form liquid-ordered phases that are c...
AbstractLipid lateral segregation into specific domains in cellular membranes is associated with cel...
AbstractWe use 2H-NMR, 1H-MAS NMR, and fluorescence microscopy to detect immiscibility in three part...
Phospholipid ternary systems are useful model systems for understanding lipid-lipid interactions and...
AbstractUnderstanding the phase behavior of biological membranes is helped by the study of more simp...
AbstractPhase diagrams of 3-component lipid bilayer mixtures containing cholesterol reveal major dif...
AbstractIntrinsic heterogeneities, represented as domain formations in biological membranes, are imp...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
AbstractThere is broad interest in the question of fluid-fluid phase coexistence in membranes, in pa...
AbstractCholesterol is believed to be an important component in compositionally distinct lipid domai...
AbstractThe differential miscibility of membrane lipids is thought to be the basis for the formation...
AbstractA ternary phase diagram is proposed for the hydrated lamellar lipid mixture dipalmitoylphosp...
The governing paradigm in biology states that understanding the structure of biological macromolecul...
AbstractTo investigate the properties of a pure liquid ordered (Lo) phase in a model membrane system...
In an effort to understand "rafts" in biological membranes, we propose phenomenological models for s...
AbstractMixtures of phospholipids with cholesterol are able to form liquid-ordered phases that are c...
AbstractLipid lateral segregation into specific domains in cellular membranes is associated with cel...
AbstractWe use 2H-NMR, 1H-MAS NMR, and fluorescence microscopy to detect immiscibility in three part...
Phospholipid ternary systems are useful model systems for understanding lipid-lipid interactions and...
AbstractUnderstanding the phase behavior of biological membranes is helped by the study of more simp...
AbstractPhase diagrams of 3-component lipid bilayer mixtures containing cholesterol reveal major dif...
AbstractIntrinsic heterogeneities, represented as domain formations in biological membranes, are imp...
Nonrandom mixing of lipids and proteins in the plasma membrane plays an important role in many cellu...
AbstractThere is broad interest in the question of fluid-fluid phase coexistence in membranes, in pa...
AbstractCholesterol is believed to be an important component in compositionally distinct lipid domai...
AbstractThe differential miscibility of membrane lipids is thought to be the basis for the formation...
AbstractA ternary phase diagram is proposed for the hydrated lamellar lipid mixture dipalmitoylphosp...
The governing paradigm in biology states that understanding the structure of biological macromolecul...
AbstractTo investigate the properties of a pure liquid ordered (Lo) phase in a model membrane system...
In an effort to understand "rafts" in biological membranes, we propose phenomenological models for s...
AbstractMixtures of phospholipids with cholesterol are able to form liquid-ordered phases that are c...
AbstractLipid lateral segregation into specific domains in cellular membranes is associated with cel...
AbstractWe use 2H-NMR, 1H-MAS NMR, and fluorescence microscopy to detect immiscibility in three part...