In this paper, we revised the current understanding of the protein corona that is created on the surface of nanoparticles in blood plasma after an intravenous injection. We have focused on nanoparticles that have a proven therapeutic outcome. These nanoparticles are based on two types of biocompatible amphiphilic copolymers based on N-(2- hydroxypropyl)methacrylamide (HPMA): a block copolymer, poly(ε-caprolactone) (PCL)-b- poly(HPMA), and a statistical HPMA copolymer bearing cholesterol moieties, which have been tested both in vitro and in vivo. We studied the interaction of nanoparticles with blood plasma and selected blood plasma proteins by electron paramagnetic resonance (EPR), isothermal titration calorimetry, dynamic light scattering,...
The potential use of nanomaterials in medicine offers opportunities for novel therapeutic approaches...
Nanoparticles are currently finding increasing use as drug delivery systems in the treatment of canc...
In vitro incubation of nanomaterials with plasma offer insights on biological interactions, but cann...
In this paper, we revised the current understanding of the protein corona that is created on the sur...
The current understanding of nanoparticle–protein interactions indicates that they rapidly adsorb pr...
Nanomedicine is increasingly considered as one of the most promising ways to overcome the limits of ...
International audienceNanoparticles (NPs) based on biocompatible and biodegradable polymers such as ...
The adsorption of biomolecules to the surface of nanoparticles (NPs) following administration into b...
Interaction of serum proteins and nanoparticles leads to a nanoparticle-protein complex formation th...
It is now well understood that once in contact with biological fluids, nanoscale objects lose their ...
An investigation of protein affinities and interactions that occur at the interface between a new bi...
Polymeric nanoparticles have shown significant potential for the development of new medicines for un...
In a biological environment, nanoparticles immediately become covered by an evolving corona of biomo...
BACKGROUND: Nanoparticles in contact with biological fluids interact with proteins and other biomole...
Background: Nanoparticles in contact with biological fluids interact with proteins and other biomole...
The potential use of nanomaterials in medicine offers opportunities for novel therapeutic approaches...
Nanoparticles are currently finding increasing use as drug delivery systems in the treatment of canc...
In vitro incubation of nanomaterials with plasma offer insights on biological interactions, but cann...
In this paper, we revised the current understanding of the protein corona that is created on the sur...
The current understanding of nanoparticle–protein interactions indicates that they rapidly adsorb pr...
Nanomedicine is increasingly considered as one of the most promising ways to overcome the limits of ...
International audienceNanoparticles (NPs) based on biocompatible and biodegradable polymers such as ...
The adsorption of biomolecules to the surface of nanoparticles (NPs) following administration into b...
Interaction of serum proteins and nanoparticles leads to a nanoparticle-protein complex formation th...
It is now well understood that once in contact with biological fluids, nanoscale objects lose their ...
An investigation of protein affinities and interactions that occur at the interface between a new bi...
Polymeric nanoparticles have shown significant potential for the development of new medicines for un...
In a biological environment, nanoparticles immediately become covered by an evolving corona of biomo...
BACKGROUND: Nanoparticles in contact with biological fluids interact with proteins and other biomole...
Background: Nanoparticles in contact with biological fluids interact with proteins and other biomole...
The potential use of nanomaterials in medicine offers opportunities for novel therapeutic approaches...
Nanoparticles are currently finding increasing use as drug delivery systems in the treatment of canc...
In vitro incubation of nanomaterials with plasma offer insights on biological interactions, but cann...