The formation of a protein corona, where proteins spontaneously adhere to the surface of nanomaterials in biological environments, leads to changes in their physicochemical properties and subsequently affects their intended biomedical functionalities. Most current methods to study protein corona formation are ensemble-averaging and either require fluorescent labeling, washing steps, or are only applicable to specific types of particles. Here we introduce real-time all-optical nanoparticle analysis by scattering microscopy (RONAS) to track the formation of protein corona in full serum, at the single-particle level, without any labeling. RONAS uses optical scattering microscopy and enables real-time and in situ tracking of protein adsorption ...
The efficacy of drug delivery and other nanomedicine-related therapies largely relies on the ability...
Protein corona formation and nanoparticle aggregation have been heavily discussed over the last year...
When nanoparticles are exposed to biological environments, proteins rapidly adsorb to the surface an...
The formation of a protein corona, where proteins spontaneously adhere to the surface of nanomateria...
The formation of a protein corona, where proteins spontaneously adhere to the surface of nanomateria...
Engineered nanoparticles have emerged as a promising platform upon which to develop biological sensi...
In biological environments, nanoparticles are enshrouded by a layer of biomolecules, predominantly p...
Nanoparticles represent a promising class of material for nanomedicine and molecular biosensing. The...
Proteins spontaneously adsorb on nanoparticle surfaces when injected into the bloodstream. It drasti...
In biological environments, nanoparticles are enshrouded by a layer of biomolecules, predominantly p...
Nanomedicine is a booming medical field that utilises nanoparticles (NPs) for the development of med...
\u3cp\u3eThe adsorption of serum proteins, leading to the formation of a biomolecular corona, is a k...
Surface modifications of highly monodisperse citrate-stabilized gold nanoparticles (AuNPs) with size...
Bio-nano interface investigation models are mainly based on the type of proteins present on corona, ...
We analyzed the different spectroscopic profiles of nanoparticle hard protein corona formation using...
The efficacy of drug delivery and other nanomedicine-related therapies largely relies on the ability...
Protein corona formation and nanoparticle aggregation have been heavily discussed over the last year...
When nanoparticles are exposed to biological environments, proteins rapidly adsorb to the surface an...
The formation of a protein corona, where proteins spontaneously adhere to the surface of nanomateria...
The formation of a protein corona, where proteins spontaneously adhere to the surface of nanomateria...
Engineered nanoparticles have emerged as a promising platform upon which to develop biological sensi...
In biological environments, nanoparticles are enshrouded by a layer of biomolecules, predominantly p...
Nanoparticles represent a promising class of material for nanomedicine and molecular biosensing. The...
Proteins spontaneously adsorb on nanoparticle surfaces when injected into the bloodstream. It drasti...
In biological environments, nanoparticles are enshrouded by a layer of biomolecules, predominantly p...
Nanomedicine is a booming medical field that utilises nanoparticles (NPs) for the development of med...
\u3cp\u3eThe adsorption of serum proteins, leading to the formation of a biomolecular corona, is a k...
Surface modifications of highly monodisperse citrate-stabilized gold nanoparticles (AuNPs) with size...
Bio-nano interface investigation models are mainly based on the type of proteins present on corona, ...
We analyzed the different spectroscopic profiles of nanoparticle hard protein corona formation using...
The efficacy of drug delivery and other nanomedicine-related therapies largely relies on the ability...
Protein corona formation and nanoparticle aggregation have been heavily discussed over the last year...
When nanoparticles are exposed to biological environments, proteins rapidly adsorb to the surface an...