The adhesion and engulfment of nanoparticles by biomembranes is essential for many processes such as biomedical imaging, drug delivery, nanotoxicity, and viral infection. Many studies have shown that both surface chemistry, which determines the adhesive strength of the membrane–particle interactions, and particle size represent key parameters for these processes. Here, we show that the asymmetry between the two leaflets of a bilayer membrane provides another key parameter for the engulfment of nanoparticles. The asymmetric membrane prefers to curve in a certain manner as quantitatively described by its spontaneous curvature. We derive two general relationships between particle size, adhesive strength, and spontaneous curvature that determin...
The effects of binding mode, shape, binding strength, and rotational speed of actively rotating nano...
The effects of binding mode, shape, binding strength, and rotational speed of actively rotating nano...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...
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...
Biological membranes and lipid vesicles often display complex shapes with non-uniform membrane curva...
Biological membranes and lipid vesicles often display complex shapes with non-uniform membrane curva...
Bilayer membranes are an essential component of biological cells, functioning as robust but flexible...
Lipid membranes play an essential role in both the morphology and functionality of living cells. The...
Cellular engulfment and uptake of macromolecular assemblies or nanoparticles via endocytosis can be ...
The interactions between nanosized particles and living systems are commonly mediated by what adsorb...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomemb...
The effects of binding mode, shape, binding strength, and rotational speed of actively rotating nano...
The effects of binding mode, shape, binding strength, and rotational speed of actively rotating nano...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...
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...
Biological membranes and lipid vesicles often display complex shapes with non-uniform membrane curva...
Biological membranes and lipid vesicles often display complex shapes with non-uniform membrane curva...
Bilayer membranes are an essential component of biological cells, functioning as robust but flexible...
Lipid membranes play an essential role in both the morphology and functionality of living cells. The...
Cellular engulfment and uptake of macromolecular assemblies or nanoparticles via endocytosis can be ...
The interactions between nanosized particles and living systems are commonly mediated by what adsorb...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomemb...
The effects of binding mode, shape, binding strength, and rotational speed of actively rotating nano...
The effects of binding mode, shape, binding strength, and rotational speed of actively rotating nano...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...