Nanoparticle size is a critical physicochemical determinant of the human blood plasma corona: a comprehensive quantitative proteomic analysis.
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Summary
The complexity of the plasma corona is demonstrated and its still unresolved physicochemical regulation is demonstrated, which need to be considered in nanobioscience in the future.
- Type
- article
- Published
- 2011-08-25
- Cited by
- 820
- References
- 59
- OpenAlex
- https://openalex.org/W1963565300
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20368854
Keywords
Nanoparticle, Particle size, Chemistry, Blood proteins, Particle (ecology)
References
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- Targeting cancer cells: magnetic nanoparticles as drug carriers
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- Extracellular Proteins Limit the Dispersal of Biogenic Nanoparticles
Cited by
- Iron oxide-based nanostructures for MRI and magnetic hyperthermia.
- Bridge over troubled waters: understanding the synthetic and biological identities of engineered nanomaterials.
- In vitro investigation of silica nanoparticle uptake into human endothelial cells under physiological cyclic stretch
- Chitosan functionalisation of gold nanoparticles encourages particle uptake and induces cytotoxicity and pro-inflammatory conditions in phagocytic cells, as well as enhancing particle interactions with serum components
- The concept of bio-corona in modulating the toxicity of engineered nanomaterials (ENM).
- Exploring Cellular Interactions of Liposomes Using Protein Corona Fingerprints and Physicochemical Properties.
- Nanomedicine and epigenome. Possible health risks.
- Detection of DNA Damage Induced by Cerium Dioxide Nanoparticles: From Models to Molecular Mechanism Activated.
- Nanoparticle-protein corona complexes govern the biological fates and functions of nanoparticles.
- The role of specific serum/plasma proteins in the modulation of the cellular response to amorphous silica nanoparticles
- Engineered metal based nanomaterials in aqueous environments: interactions, transformations and implications
- Formation and characterization of the nanoparticle-protein corona.
- How nanoparticles interact with cancer cells.
- Adsorption de protéines sur des colloïdes et agrégation induite
- UNDERSTANDING NANOPARTICLE-CELL INTERACTION
- A plasma protein corona enhances the biocompatibility of Au@Fe3O4 Janus particles.
- Comparative study of serum protein binding to three different carbon-based nanomaterials
- Temperature-Triggered Protein Adsorption on Polymer-Coated Nanoparticles in Serum.
- Proteomic Characterization of Biological Effects Induced by Engineered Nanomaterials
- In situ Characterization of SiO2 Nanoparticle Biointeractions Using BrightSilica
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