“Plastic antibodies” are nano-sized biomimetics prepared by the molecular imprinting technology, which have the robustness of polymers, but specificity and selectivity alike natural receptors making them ideal for analytical uses. The current challenge is to translate plastic antibodies to in vivo applications for diagnosis, drug delivery, theranostic, therefore it is crucial to evaluate the effect of the biological sample complexity on the selectivity and the formation of protein corona (PCs), which ultimately dictate the fate of circulating nanoparticles. A set (n = 4) of plastic antibodies (nanoMIPs) against different proteins was prepared. Quantitative (iBAC) shotgun proteomics permitted to define the PC composition of nanoMIPs in human...
Enhanced understanding of bio-nano interaction requires recognition of hidden factors such as protei...
Proteome modifications in a biological system can potentially mirror the occurrence of pathologies, ...
Understanding nanoparticle–protein interactions is a crucial issue in the development of targeted na...
International audienceNanomaterials have a huge potential in research fields from nanomedicine to me...
Nanoparticles are currently finding increasing use as drug delivery systems in the treatment of canc...
Over the last decade nanomaterials have had a major impact on human health for the early detection a...
It is now well understood that once in contact with biological fluids, nanoscale objects lose their ...
It is now well known that the primary interactions of biological entities (e. g., tissues and cells)...
It is now well known that the primary interactions of biological entities (e. g., tissues and cells)...
International audienceMolecularly imprinted polymers (MIP) are receiving increasing attention thanks...
The development and testing of nanomaterials is an area of interest due to promising diagnostic and ...
Upon contact with plasma or other protein-containing biological fluids, the surface of nanoparticles...
In biological fluids, proteins associate with nanoparticles, leading to a protein "corona" defining ...
The current understanding of nanoparticle–protein interactions indicates that they rapidly adsorb pr...
Background: When nanoparticles (NPs) are applied into a biological fluid, such as blood, proteins bi...
Enhanced understanding of bio-nano interaction requires recognition of hidden factors such as protei...
Proteome modifications in a biological system can potentially mirror the occurrence of pathologies, ...
Understanding nanoparticle–protein interactions is a crucial issue in the development of targeted na...
International audienceNanomaterials have a huge potential in research fields from nanomedicine to me...
Nanoparticles are currently finding increasing use as drug delivery systems in the treatment of canc...
Over the last decade nanomaterials have had a major impact on human health for the early detection a...
It is now well understood that once in contact with biological fluids, nanoscale objects lose their ...
It is now well known that the primary interactions of biological entities (e. g., tissues and cells)...
It is now well known that the primary interactions of biological entities (e. g., tissues and cells)...
International audienceMolecularly imprinted polymers (MIP) are receiving increasing attention thanks...
The development and testing of nanomaterials is an area of interest due to promising diagnostic and ...
Upon contact with plasma or other protein-containing biological fluids, the surface of nanoparticles...
In biological fluids, proteins associate with nanoparticles, leading to a protein "corona" defining ...
The current understanding of nanoparticle–protein interactions indicates that they rapidly adsorb pr...
Background: When nanoparticles (NPs) are applied into a biological fluid, such as blood, proteins bi...
Enhanced understanding of bio-nano interaction requires recognition of hidden factors such as protei...
Proteome modifications in a biological system can potentially mirror the occurrence of pathologies, ...
Understanding nanoparticle–protein interactions is a crucial issue in the development of targeted na...