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TiO2@BSA nano-composites investigated through orthogonal multi-techniques characterization platform

Academic Article
Publication Date:
2021
abstract:
Biocompatible coating based on bovine serum albumin (BSA) was applied on two different TiO nanoparticles (aeroxide P25 and food grade E171) to investigate properties and stability of resulting TiO@BSA composites, under the final perspective to create a "Safe-by-Design" coating, able to uniform, level off and mitigate surface chemistry related phenomena, as naturally occurring when nano-phases come in touch with proteins enriched biological fluids. The first step towards validating the proposed approach is a detailed characterization of surface chemistry with the quantification of amount and stability of BSA coating deposited on nanoparticles' surfaces. At this purpose, we implemented an orthogonal multi-techniques characterization platform, providing important information on colloidal behavior, particle size distribution and BSA-coating structure of investigated TiO systems. Specifically, the proposed orthogonal approach enabled the quantitative determination of bound and free (not adsorbed) BSA, a key aspect for the design of intentionally BSA coated nano-structures, in nanomedicine and, overall, for the control of nano-surface reactivity. In fact, the BSA-coating strategy developed and the orthogonal characterisation performed can be extended to different designed nanomaterials in order to further investigate the protein-corona formation and promote the implementation of BSA engineered coating as a strategy to harmonize the surface reactivity and minimize the biological impact.
Iris type:
01.01 Articolo in rivista
Keywords:
Multi-techniques characterization platform; Colloidal approach; TiO2 nanoparticle; BSA coating; Safe-by-design
List of contributors:
Zanoni, Ilaria; Costa, ANNA LUISA; Blosi, Magda; Ortelli, Simona
Authors of the University:
BLOSI MAGDA
COSTA ANNA LUISA
ORTELLI SIMONA
ZANONI ILARIA
Handle:
https://iris.cnr.it/handle/20.500.14243/397393
Published in:
COLLOIDS AND SURFACES. B, BIOINTERFACES (PRINT)
Journal
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http://www.scopus.com/record/display.url?eid=2-s2.0-85112765634&origin=inward
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