Cellular engulfment and uptake of macromolecular assemblies or nanoparticles via endocytosis can be associated to both healthy and disease-related biological processes as well as delivery of drug nanoparticles and potential nanotoxicity of pollutants. Depending on the physical and chemical properties of the system, the adsorbed particles may remain at the membrane surface, become wrapped by the membrane, or translocate across the membrane through an endocytosis-like process. In this paper, we address the question of how the wrapping of colloidal particles by lipid membranes can be controlled by the shape of the particles, the particle–membrane adhesion energy, the membrane phase behavior, and the membrane-bending rigidity. We use a model sy...
The adhesion and engulfment of nanoparticles by biomembranes is essential for many processes such as...
Cellular uptake through the lipid membranes plays an important role in adsorbing nutrients and fight...
Understanding the interaction between nanoparticles (NPs) and cell membranes is crucial for the desi...
Lipid membranes, the barrier defining living cells and many of their subcompartments, bind to a wide...
The transport of particles across lipid-bilayer membranes is important for biological cells to excha...
The transport of particles across lipid-bilayer membranes is important for biological cells to excha...
The transport of particles across lipid-bilayer membranes is important for biological cells to excha...
Lipid membranes play an essential role in both the morphology and functionality of living cells. The...
The transport of particles across lipid-bilayer membranes is important for biological cells to excha...
International audienceCellular uptake through the lipid membranes plays an important role in adsorbi...
Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomemb...
Understanding interactions between microparticles and lipid membranes is of increasing importance, e...
Computer simulations of an implicit-solvent particle-based model are performed to investigate the in...
Computer simulations of an implicit-solvent particle-based model are performed to investigate the in...
Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomemb...
The adhesion and engulfment of nanoparticles by biomembranes is essential for many processes such as...
Cellular uptake through the lipid membranes plays an important role in adsorbing nutrients and fight...
Understanding the interaction between nanoparticles (NPs) and cell membranes is crucial for the desi...
Lipid membranes, the barrier defining living cells and many of their subcompartments, bind to a wide...
The transport of particles across lipid-bilayer membranes is important for biological cells to excha...
The transport of particles across lipid-bilayer membranes is important for biological cells to excha...
The transport of particles across lipid-bilayer membranes is important for biological cells to excha...
Lipid membranes play an essential role in both the morphology and functionality of living cells. The...
The transport of particles across lipid-bilayer membranes is important for biological cells to excha...
International audienceCellular uptake through the lipid membranes plays an important role in adsorbi...
Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomemb...
Understanding interactions between microparticles and lipid membranes is of increasing importance, e...
Computer simulations of an implicit-solvent particle-based model are performed to investigate the in...
Computer simulations of an implicit-solvent particle-based model are performed to investigate the in...
Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomemb...
The adhesion and engulfment of nanoparticles by biomembranes is essential for many processes such as...
Cellular uptake through the lipid membranes plays an important role in adsorbing nutrients and fight...
Understanding the interaction between nanoparticles (NPs) and cell membranes is crucial for the desi...