Nanoparticles (NPs) have been widely applied as drug carriers in drug delivery, due to their unique physical and structural properties. To achieve the drug delivery purpose, receptor-mediated endocytosis is a primary explored mechanism to internalize NPs into tumor cells. During the endocytosis process, properties of NPs, including size, shape, and surface functionality, play an important role in determining the final drug delivery efficacy. Many of these NP properties have been extensively explored individually. However, the multiple NP properties naturally interplay with each other in the endocytosis process to determine the internalization efficiency together. Therefore, it is significantly important to understand the interplay of differ...
Humans are exposed to nanoscopical nanobiovectors (e.g. coronavirus SARS-CoV-2) as well as abiotic m...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
Using multi-scale molecular dynamics (MD) simulations, we systematically study the influences of nan...
Nanoparticles (NPs) have been widely applied as drug carriers in drug delivery, due to their unique ...
Nanoparticles (NPs) hold great promises for targeted disease diagnosis and therapy. Despite consider...
Using coarse-grained molecular dynamics simulations, we systematically investigate the receptor-medi...
Nanoparticle (NP)–cell interaction mediated by receptor–ligand bonds is a crucial phenomenon in path...
Nano-sized materials have great potential as drug carriers for nanomedicine applications. Thanks to ...
Nuri Oh,1,2 Ji-Ho Park1–31Department of Bio and Brain Engineering, 2Institute for Optical Scie...
Knowledge of the interactions between nanoparticles (NPs) and cell membranes is of great importance ...
Nanoparticles have been considered as a type of powerful tool to deliver drugs and genes into cells ...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
A polarized layer of endothelial cells that comprises the blood–brain barrier (BBB) precludes access...
A polarized layer of endothelial cells that comprises the blood-brain barrier (BBB) precludes access...
Nanoparticles (NPs) have shown great promise as intracellular imaging probes or nanocarriers and are...
Humans are exposed to nanoscopical nanobiovectors (e.g. coronavirus SARS-CoV-2) as well as abiotic m...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
Using multi-scale molecular dynamics (MD) simulations, we systematically study the influences of nan...
Nanoparticles (NPs) have been widely applied as drug carriers in drug delivery, due to their unique ...
Nanoparticles (NPs) hold great promises for targeted disease diagnosis and therapy. Despite consider...
Using coarse-grained molecular dynamics simulations, we systematically investigate the receptor-medi...
Nanoparticle (NP)–cell interaction mediated by receptor–ligand bonds is a crucial phenomenon in path...
Nano-sized materials have great potential as drug carriers for nanomedicine applications. Thanks to ...
Nuri Oh,1,2 Ji-Ho Park1–31Department of Bio and Brain Engineering, 2Institute for Optical Scie...
Knowledge of the interactions between nanoparticles (NPs) and cell membranes is of great importance ...
Nanoparticles have been considered as a type of powerful tool to deliver drugs and genes into cells ...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
A polarized layer of endothelial cells that comprises the blood–brain barrier (BBB) precludes access...
A polarized layer of endothelial cells that comprises the blood-brain barrier (BBB) precludes access...
Nanoparticles (NPs) have shown great promise as intracellular imaging probes or nanocarriers and are...
Humans are exposed to nanoscopical nanobiovectors (e.g. coronavirus SARS-CoV-2) as well as abiotic m...
Engineered nanomaterials are known to enter human cells, often via active endocytosis. Mechanistic d...
Using multi-scale molecular dynamics (MD) simulations, we systematically study the influences of nan...