Antibacterial activity and iron release of organic‐inorganic hybrid biomaterials synthesized via the sol‐gel route

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Abstract

The aim of this work was the synthesis of hybrid materials of iron (II)‐based therapeutic systems via the sol‐gel method. Increasing amounts of polyethylene glycol (PEG 6, 12, 24, 50 wt%) were added to SiO2/Fe20 wt% to modulate the release kinetics of the drug from the systems. Fourier-transform infrared (FTIR) spectroscopy was used to study the interactions between different com-ponents in the hybrid materials. The release kinetics in a simulated body fluid (SBF) were investi-gated, and the amount of Fe2+ released was detected via ultraviolet‐visible spectroscopy (UV‐Vis) after reaction with ortho‐phenanthroline. Furthermore, biological characterization was carried out. The bioactivity of the synthesized hybrid materials was evaluated via the formation of a layer of hydroxyapatite on the surface of samples soaked in SBF using spectroscopy. Finally, the potential antibacterial properties of seven different materials against two different bacteria—E. coli and S. aureus—were investigated.

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Catauro, M., D’errico, Y., D’angelo, A., Clarke, R. J., & Blanco, I. (2021). Antibacterial activity and iron release of organic‐inorganic hybrid biomaterials synthesized via the sol‐gel route. Applied Sciences (Switzerland), 11(19). https://doi.org/10.3390/app11199311

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