We present a simple two-state model to understand the size-dependent endocytosis of nanoparticles. Using this model, we elucidate the relevant energy terms required to understand the size-dependent uptake mechanism and verify it by correctly predicting the behavior at large and small particle sizes. In the absence of interactions between the nanoparticles, we observe an asymmetric distribution of sizes with maximum uptake at intermediate sizes and a minimum size cut-off below which there can be no endocytosis. Including the effect of interactions in our model has remarkable effects on the uptake characteristics. Attractive interactions shift the minimum size cut-off and increase the optimal uptake while repulsive interactions make the distr...
Interaction of nanoparticles (NPs) with cell membrane is a crucial issue in studying drug delivery, ...
The adhesion and engulfment of nanoparticles by biomembranes is essential for many processes such as...
During the last two decades, applications of nanotechnology are delivered to benefit the human socie...
The size of a cell is central to many functions, including cellular communication and exchange of ma...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
Nano-sized objects interact with biological systems in fundamentally novel ways, thereby holding gre...
Herein we investigate the size-dependent force of endocytosing single gold nanoparticles by HeLa cel...
The increased application of nanoparticles (NPs) is increasing the risk of their release into the en...
Nanoparticle (NP)–cell interaction mediated by receptor–ligand bonds is a crucial phenomenon in path...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
The primary function of the cell membrane is to protect cells from their surroundings. This entails ...
cell membrane; endocytosis; fluorescence microscopy; nanoparticle; size effect Beilstein J. Nanotech...
Knowledge of the interactions between nanoparticles (NPs) and cell membranes is of great importance ...
Nanoparticles (NPs) hold great promises for targeted disease diagnosis and therapy. Despite consider...
The understanding of the interaction between nanoparticles (NPs) and cells is crucial to design nano...
Interaction of nanoparticles (NPs) with cell membrane is a crucial issue in studying drug delivery, ...
The adhesion and engulfment of nanoparticles by biomembranes is essential for many processes such as...
During the last two decades, applications of nanotechnology are delivered to benefit the human socie...
The size of a cell is central to many functions, including cellular communication and exchange of ma...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
Nano-sized objects interact with biological systems in fundamentally novel ways, thereby holding gre...
Herein we investigate the size-dependent force of endocytosing single gold nanoparticles by HeLa cel...
The increased application of nanoparticles (NPs) is increasing the risk of their release into the en...
Nanoparticle (NP)–cell interaction mediated by receptor–ligand bonds is a crucial phenomenon in path...
The uptake of nanoparticles into cells often involves their engulfment by the plasma membrane and a ...
The primary function of the cell membrane is to protect cells from their surroundings. This entails ...
cell membrane; endocytosis; fluorescence microscopy; nanoparticle; size effect Beilstein J. Nanotech...
Knowledge of the interactions between nanoparticles (NPs) and cell membranes is of great importance ...
Nanoparticles (NPs) hold great promises for targeted disease diagnosis and therapy. Despite consider...
The understanding of the interaction between nanoparticles (NPs) and cells is crucial to design nano...
Interaction of nanoparticles (NPs) with cell membrane is a crucial issue in studying drug delivery, ...
The adhesion and engulfment of nanoparticles by biomembranes is essential for many processes such as...
During the last two decades, applications of nanotechnology are delivered to benefit the human socie...