Nanoparticle (NP)–cell interaction mediated by receptor–ligand bonds is a crucial phenomenon in pathology, cellular immunity, and drug delivery systems, and relies strongly on the shape of NPs and the stiffness of the cell. Given this significance, a fundamental question is raised on how the ligand distribution may affect the membrane wrapping of non-spherical NPs under the influence of cytoskeleton deformation. To address this issue, in this work we use a coupled elasticity–diffusion model to systematically investigate the role of ligand distribution in the cytoskeleton-associated endocytosis of ellipsoidal NPs for different NP shapes, sizes, cytoskeleton stiffness, and the initial receptor densities. In this model, we have taken into acco...
Nanoparticles offer a promising medical tool for targeted drug delivery, for example to treat inflam...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
AbstractEnveloped viruses and nanosized biomimetic particles for drug and gene delivery enter target...
Using coarse-grained molecular dynamics simulations, we systematically investigate the receptor-medi...
Nanoparticles have been considered as a type of powerful tool to deliver drugs and genes into cells ...
Nanoparticles (NPs) hold great promises for targeted disease diagnosis and therapy. Despite consider...
Nanoparticles (NPs) have been widely applied as drug carriers in drug delivery, due to their unique ...
Receptor-mediated endocytosis is an ubiquitous process through which cells internalize biological or...
Unraveling the interaction of nanoparticles with living cells is fundamental for nanomedicine and na...
Using multi-scale molecular dynamics (MD) simulations, we systematically study the influences of nan...
Recent advances in force tracing technique have revealed that cellular uptake of nanoparticle (NP) i...
International audienceCellular uptake through the lipid membranes plays an important role in adsorbi...
It is possible to create sophisticated and target specific devices for nanomedicine thanks to techno...
Knowledge of the interactions between nanoparticles (NPs) and cell membranes is of great importance ...
Nano-sized materials have great potential as drug carriers for nanomedicine applications. Thanks to ...
Nanoparticles offer a promising medical tool for targeted drug delivery, for example to treat inflam...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
AbstractEnveloped viruses and nanosized biomimetic particles for drug and gene delivery enter target...
Using coarse-grained molecular dynamics simulations, we systematically investigate the receptor-medi...
Nanoparticles have been considered as a type of powerful tool to deliver drugs and genes into cells ...
Nanoparticles (NPs) hold great promises for targeted disease diagnosis and therapy. Despite consider...
Nanoparticles (NPs) have been widely applied as drug carriers in drug delivery, due to their unique ...
Receptor-mediated endocytosis is an ubiquitous process through which cells internalize biological or...
Unraveling the interaction of nanoparticles with living cells is fundamental for nanomedicine and na...
Using multi-scale molecular dynamics (MD) simulations, we systematically study the influences of nan...
Recent advances in force tracing technique have revealed that cellular uptake of nanoparticle (NP) i...
International audienceCellular uptake through the lipid membranes plays an important role in adsorbi...
It is possible to create sophisticated and target specific devices for nanomedicine thanks to techno...
Knowledge of the interactions between nanoparticles (NPs) and cell membranes is of great importance ...
Nano-sized materials have great potential as drug carriers for nanomedicine applications. Thanks to ...
Nanoparticles offer a promising medical tool for targeted drug delivery, for example to treat inflam...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
AbstractEnveloped viruses and nanosized biomimetic particles for drug and gene delivery enter target...