Characterizing the Hard and Soft Nanoparticle-Protein Corona with Multilayer Adsorption

Fuente: arXiv
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Hauptverfasser: Vilanova, Oriol, Martinez-Serra, Alberto, Monopoli, Marco P, Franzese, Giancarlo
Format: Preprint
Veröffentlicht: 2024
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author Vilanova, Oriol
Martinez-Serra, Alberto
Monopoli, Marco P
Franzese, Giancarlo
author_facet Vilanova, Oriol
Martinez-Serra, Alberto
Monopoli, Marco P
Franzese, Giancarlo
contents Nanoparticles (NPs) in contact with biological fluid adsorb biomolecules into a corona. This corona comprises proteins that strongly bind to the NP (hard corona) and loosely bound proteins (soft corona) that dynamically exchange with the surrounding solution. While the kinetics of hard corona formation is relatively well understood, thanks to experiments and robust simulation models, the experimental characterization and simulation of the soft corona present a more significant challenge. Here, we review the current state of the art in soft corona characterization and introduce a novel open-source computational model to simulate its dynamic behavior, for which we provide the documentation. We focus on the case of transferrin (Tf) interacting with polystyrene NPs as an illustrative example, demonstrating how this model captures the complexities of the soft corona and offers deeper insights into its structure and behavior. We show that the soft corona is dominated by a glassy evolution that we relate to crowding effects. This work advances our understanding of the soft corona, bridging experimental limitations with improved simulation techniques.
format Preprint
id arxiv_https___arxiv_org_abs_2411_13279
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Characterizing the Hard and Soft Nanoparticle-Protein Corona with Multilayer Adsorption
Vilanova, Oriol
Martinez-Serra, Alberto
Monopoli, Marco P
Franzese, Giancarlo
Soft Condensed Matter
Nanoparticles (NPs) in contact with biological fluid adsorb biomolecules into a corona. This corona comprises proteins that strongly bind to the NP (hard corona) and loosely bound proteins (soft corona) that dynamically exchange with the surrounding solution. While the kinetics of hard corona formation is relatively well understood, thanks to experiments and robust simulation models, the experimental characterization and simulation of the soft corona present a more significant challenge. Here, we review the current state of the art in soft corona characterization and introduce a novel open-source computational model to simulate its dynamic behavior, for which we provide the documentation. We focus on the case of transferrin (Tf) interacting with polystyrene NPs as an illustrative example, demonstrating how this model captures the complexities of the soft corona and offers deeper insights into its structure and behavior. We show that the soft corona is dominated by a glassy evolution that we relate to crowding effects. This work advances our understanding of the soft corona, bridging experimental limitations with improved simulation techniques.
title Characterizing the Hard and Soft Nanoparticle-Protein Corona with Multilayer Adsorption
topic Soft Condensed Matter
url https://arxiv.org/abs/2411.13279