Detalhes do Documento

Protein-Nanoparticle Interactions Govern the Interfacial Behavior of Polymeric Nanogels: Study of Protein Corona Formation at the Air/Water Interface

Autor(es): Traldi, Federico ; Liu, Pengfei ; Albino, Inês ; Ferreira, Lino ; Zarbakhsh, Ali ; Resmini, Marina

Data: 2023

Identificador Persistente: https://hdl.handle.net/10316/114029

Origem: Estudo Geral - Universidade de Coimbra

Assunto(s): surface tensiometry; protein corona; nanogels; interfacial behavior; neutron reflectivity; Nanogels; Water; Polymers; Albumins; Surface Properties; Protein Corona; Nanoparticles


Descrição

Biomedical applications of nanoparticles require a fundamental understanding of their interactions and behavior with biological interfaces. Protein corona formation can alter the morphology and properties of nanomaterials, and knowledge of the interfacial behavior of the complexes, using in situ analytical techniques, will impact the development of nanocarriers to maximize uptake and permeability at cellular interfaces. In this study we evaluate the interactions of acrylamide-based nanogels, with neutral, positive, and negative charges, with serum-abundant proteins albumin, fibrinogen, and immunoglobulin G. The formation of a protein corona complex between positively charged nanoparticles and albumin is characterized by dynamic light scattering, circular dichroism, and surface tensiometry; we use neutron reflectometry to resolve the complex structure at the air/water interface and demonstrate the effect of increased protein concentration on the interface. Surface tensiometry data suggest that the structure of the proteins can impact the interfacial properties of the complex formed. These results contribute to the understanding of the factors that influence the bio-nano interface, which will help to design nanomaterials with improved properties for applications in drug delivery.

Tipo de Documento Artigo científico
Idioma Inglês
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