Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomembranes. Nanoparticles are wrapped spontaneously by biomembranes if the adhesive interactions between the particles and membranes compensate for the cost of membrane bending. In the last years, the cooperative wrapping of spherical nanoparticles in membrane tubules has been observed in experiments and simulations. For spherical nanoparticles, the stability of the particle-filled membrane tubules strongly depends on the range of the adhesive particle–membrane interactions. In this article, it is shown via modeling and energy minimization that elongated and patchy particles are wrapped cooperatively in membrane tubules that are highly stable for ...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...
We present a review of recent results on the adhesion, wrapping and aggregation of spherical nanopar...
Nanoparticles in biological systems encounter lipid-bilayer membranes as barriers. They interact wit...
Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomemb...
Understanding the interaction between nanoparticles (NPs) and cell membranes is crucial for the desi...
Understanding the interaction between nanoparticles (NPs) and cell membranes is crucial for the desi...
Cellular engulfment and uptake of macromolecular assemblies or nanoparticles via endocytosis can be ...
Lipid membranes play an essential role in both the morphology and functionality of living cells. The...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
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...
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...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...
We present a review of recent results on the adhesion, wrapping and aggregation of spherical nanopar...
Nanoparticles in biological systems encounter lipid-bilayer membranes as barriers. They interact wit...
Advances in nanotechnology lead to an increasing interest in how nanoparticles interact with biomemb...
Understanding the interaction between nanoparticles (NPs) and cell membranes is crucial for the desi...
Understanding the interaction between nanoparticles (NPs) and cell membranes is crucial for the desi...
Cellular engulfment and uptake of macromolecular assemblies or nanoparticles via endocytosis can be ...
Lipid membranes play an essential role in both the morphology and functionality of living cells. The...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
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...
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...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...
We present a review of recent results on the adhesion, wrapping and aggregation of spherical nanopar...
Nanoparticles in biological systems encounter lipid-bilayer membranes as barriers. They interact wit...