Distinguishing Protein Corona from Nanoparticle Aggregate Formation in Complex Biological Media Using X-ray Photon Correlation Spectroscopy.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39361530.
- Also identified by DOI 10.1021/acs.nanolett.4c03662 and PMC identifier 11505373.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
In biological systems, nanoparticles interact with biomolecules, which may undergo protein corona formation that can result in noncontrolled aggregation. Therefore, comprehending the behavior and evolution of nanoparticles in the presence of biological fluids is paramount in nanomedicine. However, traditional lab-based colloid methods characterize diluted suspensions in low-complexity media, which hinders in-depth studies in complex biological environments. Here, we apply X-ray photon correlation spectroscopy (XPCS) to investigate silica nanoparticles (SiO<sub>2</sub>) in various environments, ranging from low to high complex biological media. Interestingly, SiO<sub>2</sub> revealed Brownian motion behavior, irrespective of the complexity of the chosen media. Moreover, the SiO<sub>2</sub> surface and media composition were tailored to underline the differences between a corona-free system from protein corona and aggregates formation. Our results highlighted XPCS potential for real-time nanoparticle analysis in biological media, surpassing the limitations of conventional techniques and offering deeper insights into colloidal behavior in complex environments.
Medical subject headings
- Silicon Dioxide
- Nanoparticles
- Protein Corona