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Surface modification of silicate, borosilicate and phosphate bioactive glasses to improve/control protein adsorption: PART I

Authors :
Virginia Alessandra Gobbo
Vijay Singh Parihar
Mirko Prato
Minna Kellomäki
Enrica Vernè
Silvia Spriano
Jonathan Massera
Tampere University
BioMediTech
Publication Year :
2022
Publisher :
Zenodo, 2022.

Abstract

Bioactive glasses (BGs) are promising for bone tissue regeneration. BG composition can be tailored, according to the application of interest, and/or functionalized with organic molecules/biomolecules to improve their per- formances. However, despite the wide knowledge concerning BGs, their interaction with proteins, fundamental for controlling the fate of the implant, has not been deeply investigated yet. Controlling or predicting protein adsorption requires a full understanding of the materials surface physico-chemical properties. In this work, four different BGs (S53P4, B25, SCNB, PhGlass) were surface-modified by four different treatments: 72 h-soaking in TRIS, 72 h soaking in simulated body fluid, APTES grafting and quaternized APTES grafting. The surfaces were then characterized both untreated and after each treatment by contact angle, zeta potential analysis, X-ray photoelectron spectroscopy, Fourier Transform InfraRed–Attenuated Total Reflectance spectroscopy and Scan- ning Electron Microscopy and Energy Dispersive Spectroscopy. Inductively Coupled Plasma – Optical Emission Spectrometry was then performed to investigate the ion leaching. The aim of this study (Part I) is the physico- chemical characterization of BGs as a function of the implemented treatments, aiming to better understand how the superficial properties are successively affecting protein adsorption. Protein adsorption on untreated and treated BGs will be discussed in a following manuscript (Part II).&nbsp

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....185426abd35c006cb2dd3356fd24b783