The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a fission of the latter. Understanding the physical mechanisms underlying these uptake processes may be achieved by the investigation of simple model systems that can be compared to theoretical models. Here, we present experiments on a massive uptake of silica nanoparticles by giant unilamellar lipid vesicles (GUVs). We find that this uptake process depends on the size of the particles as well as on the thermodynamic state of the lipid membrane. Our findings are discussed in the light of several theoretical models and indicate that these models have to be extended in order to capture the interaction between nanomaterials and biological membrane...
Health concerns associated with the advent of nanotechnologies have risen sharply when it was found ...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...
For any living cell the exchange with its environment is vital. Therefore, many different kinds of c...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
AbstractThe interaction of nanoparticles (NPs) with lipid membranes is an integral step in the inter...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Potential applications of nanoparticles in various field including medicine and industries demand ca...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Engineered nanoparticles (NPs) are nanoscale materials with unique physicochemical properties compar...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
The interactions between nanosized particles and living systems are commonly mediated by what adsorb...
Health concerns associated with the advent of nanotechnologies have risen sharply when it was found ...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...
For any living cell the exchange with its environment is vital. Therefore, many different kinds of c...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
AbstractThe interaction of nanoparticles (NPs) with lipid membranes is an integral step in the inter...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Potential applications of nanoparticles in various field including medicine and industries demand ca...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Engineered nanoparticles (NPs) are nanoscale materials with unique physicochemical properties compar...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
The interactions between nanosized particles and living systems are commonly mediated by what adsorb...
Health concerns associated with the advent of nanotechnologies have risen sharply when it was found ...
Understanding the interactions between nanoparticles (NPs) and biological matter is a high-priority ...
For any living cell the exchange with its environment is vital. Therefore, many different kinds of c...