We demonstrated that it is possible to identify the protein-nanoparticle interaction site at amino acid scale in solution. Using NMR, chemical shift perturbation analysis, and dynamic light scattering we have identified a specific domain of human ubiquitin that interacts with gold nanoparticles. This method allows a detailed structural analysis of proteins absorbed onto surfaces of nanoparticles in physiological conditions and it will provide much needed experimental data for better modelling and prediction of protein-nanopartide interactions.JRC.DG.I.5-Nanobioscience
The potential use of nanoparticles (NPs) in biomedical applications has attracted considerable inter...
The successful application of nanomaterials in biosciences necessitates an in-depth understanding of...
The intense research in proteomics is demanding for fast, reliable and easy-to-use methods in order ...
Protein–nanoparticle associations have important applications in nanoscience and nanotechnology such...
The favorable interaction between proteins and nanoparticles has sparked potential applications of n...
In biological systems, nanoparticles (NPs) elicit bioactivity upon interaction with proteins. As a r...
In order to better understand the physical basis of the biological activity of nanoparticles (NPs) i...
In recent years, the fabrication of nanomaterials and exploration of their properties have attracted...
Gold nanoparticles (AuNPs) have been of interest due to their biocompatibility and surface plasmon r...
Detailed knowledge of the molecular interaction of protein–quantum dot (QD) association facilitates ...
Nanoparticles (NPs) in the biological environment are exposed to a large variety and concentration o...
ABSTRACT: Molecular identification of protein molecules surrounding nanoparticles (NPs) may provide ...
Nanoparticles (NPs) in the biological environment are exposed to a large variety and concentration o...
The spontaneous formation of a protein corona on a nanoparticle surface influences the physiological...
Here, we study the human serum albumin (HSA) protein–Au nanoparticle interaction to identify the spe...
The potential use of nanoparticles (NPs) in biomedical applications has attracted considerable inter...
The successful application of nanomaterials in biosciences necessitates an in-depth understanding of...
The intense research in proteomics is demanding for fast, reliable and easy-to-use methods in order ...
Protein–nanoparticle associations have important applications in nanoscience and nanotechnology such...
The favorable interaction between proteins and nanoparticles has sparked potential applications of n...
In biological systems, nanoparticles (NPs) elicit bioactivity upon interaction with proteins. As a r...
In order to better understand the physical basis of the biological activity of nanoparticles (NPs) i...
In recent years, the fabrication of nanomaterials and exploration of their properties have attracted...
Gold nanoparticles (AuNPs) have been of interest due to their biocompatibility and surface plasmon r...
Detailed knowledge of the molecular interaction of protein–quantum dot (QD) association facilitates ...
Nanoparticles (NPs) in the biological environment are exposed to a large variety and concentration o...
ABSTRACT: Molecular identification of protein molecules surrounding nanoparticles (NPs) may provide ...
Nanoparticles (NPs) in the biological environment are exposed to a large variety and concentration o...
The spontaneous formation of a protein corona on a nanoparticle surface influences the physiological...
Here, we study the human serum albumin (HSA) protein–Au nanoparticle interaction to identify the spe...
The potential use of nanoparticles (NPs) in biomedical applications has attracted considerable inter...
The successful application of nanomaterials in biosciences necessitates an in-depth understanding of...
The intense research in proteomics is demanding for fast, reliable and easy-to-use methods in order ...