<p>The surface of cell membranes can display a high degree of lateral heterogeneity. This non-uniform distribution of constituents is characterized by mobile nanodomain clusters called rafts. Enriched by saturated phospholipids, cholesterol and proteins, rafts are considered to be vital for several important cellular functions such as signalling and trafficking, morphological transformations associated with exocytosis and endocytosis and even as sites for the replication of viruses. Understanding the evolving distribution of these domains can provide significant insight into the regulation of cell function. Giant vesicles are simple prototypes of cell membranes. Microdomains on vesicles can be considered as simple analogues of rafts on cel...
We propose and investigate a model for lipid raft formation and dynamics in biological membranes. Th...
The bacterial cell envelope is composed of a mixture of different lipids and proteins, making it an ...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...
AbstractDomain formation is modeled on the surface of giant unilamellar vesicles using a Landau fiel...
AbstractDomain formation is modeled on the surface of giant unilamellar vesicles using a Landau fiel...
We study the time evolution of the shape of a vesicle membrane under time-dependent spontaneous curv...
Lipid membranes regulate the flow of materials and information between cells and their organelles. F...
Cellular membranes are a heterogeneous mix of lipids, proteins and small molecules. Special grouping...
We study the time evolution of the shape of a vesicle membrane under time-dependent spontaneous curv...
Reaction-diffusion systems encapsulated within giant unilamellar vesicles (GUVs) can lead to shape o...
Cellular membranes are a heterogeneous mix of lipids, proteins and small molecules. Special grouping...
We propose and investigate a model for lipid raft formation and dynamics in biological membranes. Th...
AbstractBiological membranes are known to contain compositional heterogeneities, often termed rafts,...
Cell membranes are crucial to the life of cells and vesicles are important model systems for cell me...
We propose and investigate a model for lipid raft formation and dynamics in biological membranes. Th...
We propose and investigate a model for lipid raft formation and dynamics in biological membranes. Th...
The bacterial cell envelope is composed of a mixture of different lipids and proteins, making it an ...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...
AbstractDomain formation is modeled on the surface of giant unilamellar vesicles using a Landau fiel...
AbstractDomain formation is modeled on the surface of giant unilamellar vesicles using a Landau fiel...
We study the time evolution of the shape of a vesicle membrane under time-dependent spontaneous curv...
Lipid membranes regulate the flow of materials and information between cells and their organelles. F...
Cellular membranes are a heterogeneous mix of lipids, proteins and small molecules. Special grouping...
We study the time evolution of the shape of a vesicle membrane under time-dependent spontaneous curv...
Reaction-diffusion systems encapsulated within giant unilamellar vesicles (GUVs) can lead to shape o...
Cellular membranes are a heterogeneous mix of lipids, proteins and small molecules. Special grouping...
We propose and investigate a model for lipid raft formation and dynamics in biological membranes. Th...
AbstractBiological membranes are known to contain compositional heterogeneities, often termed rafts,...
Cell membranes are crucial to the life of cells and vesicles are important model systems for cell me...
We propose and investigate a model for lipid raft formation and dynamics in biological membranes. Th...
We propose and investigate a model for lipid raft formation and dynamics in biological membranes. Th...
The bacterial cell envelope is composed of a mixture of different lipids and proteins, making it an ...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...