Physical-chemical aspects of protein corona: relevance to in vitro and in vivo biological impacts of nanoparticles.
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Summary
The hard corona can evolve quite significantly as one passes from protein concentrations appropriate to in vitro cell studies to those present in in vivo studies, which has deep implications for in vitro-in vivo extrapolations and will require some consideration in the future.
- Type
- article
- Published
- 2011-02-02
- Cited by
- 1,760
- References
- 3
- OpenAlex
- https://openalex.org/W2038246612
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20736209
Keywords
Chemistry, Corona (planetary geology), Context (archaeology), Nanoparticle, Biophysics
References
Cited by
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- Comparison of Behaviour in Different Liquids and in Cells of Gold Nanorods and Spherical Nanoparticles Modified by Linear Polyethyleneimine and Bovine Serum Albumin
- Effects of nanomaterials on marine invertebrates.
- Rational Design of a Transferrin-Binding Peptide Sequence Tailored to Targeted Nanoparticle Internalization.
- Disease-related metabolites affect protein-nanoparticle interactions.
- Cationic polystyrene nanoparticle and the sea urchin immune system: biocorona formation, cell toxicity, and multixenobiotic resistance phenotype
- Generation of a Diligand Complex of Bovine Serum Albumin with Quercetin and Carbon Nanotubes for the Protection of Bioactive Quercetin and Reduction of Cytotoxicity.
- Detoxification and functionalization of gold nanorods with organic polymers and their applications in cancer photothermal therapy
- Tackling the Scalability Challenge in Plasmonics by Wrinkle-Assisted Colloidal Self-Assembly.
- Nanoparticle-protein corona complexes govern the biological fates and functions of nanoparticles.
- THE PHARMACOKINETICS OF METAL- BASED ENGINEERED NANOMATERIALS, FOCUSING ON THE BLOOD-BRAIN BARRIER
- The role of specific serum/plasma proteins in the modulation of the cellular response to amorphous silica nanoparticles
- Evaluation of biocompatibility using in vitro methods: interpretation and limitations.
- Investigating the immune and cytotoxic responses of mast and lung epithelial cells to engineered nanoparticles
- Engineered metal based nanomaterials in aqueous environments: interactions, transformations and implications
- Study of the effects of protein corona on nanoparticle-membrane interactions
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