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Bioactive Properties of Composites Based on Silicate Glasses and Different Silver and Gold Structures

Authors :
Zsejke-Réka Tóth
János Kiss
Milica Todea
Gábor Kovács
Tamás Gyulavári
Alina Sesarman
Giorgiana Negrea
Dan C. Vodnar
Anna Szabó
Lucian Baia
Klára Magyari
Source :
Materials; Volume 15; Issue 5; Pages: 1655
Publication Year :
2022
Publisher :
Multidisciplinary Digital Publishing Institute, 2022.

Abstract

Using an ideal biomaterial to treat injured bones can accelerate the healing process and simultaneously exhibit antibacterial properties; thus protecting the patient from bacterial infections. Therefore, the aim of this work was to synthesize composites containing silicate-based bioactive glasses and different types of noble metal structures (i.e., AgI pyramids, AgIAu composites, Au nanocages, Au nanocages with added AgI). Bioactive glass was used as an osteoconductive bone substitute and Ag was used for its antibacterial character, while Au was included to accelerate the formation of new bone. To investigate the synergistic effects in these composites, two syntheses were carried out in two ways: AgIAu composites were added in either one step or AgI pyramids and Au nanocages were added separately. All composites showed good in vitro bioactivity. Transformation of AgI in bioactive glasses into Ag nanoparticles and other silver species resulted in good antibacterial behavior. It was observed that the Ag nanoparticles remained in the Au nanocages, which was also beneficial in terms of antibacterial properties. The presence of Au nanoparticles contributed to the composites achieving high cell viability. The most outstanding result was obtained by the consecutive addition of noble metals into the bioactive glasses, resulting in both a high antibacterial effect and good cell viability.

Details

Language :
English
ISSN :
19961944
Database :
OpenAIRE
Journal :
Materials; Volume 15; Issue 5; Pages: 1655
Accession number :
edsair.doi.dedup.....78221fa5b44032e5d199522e2e960327
Full Text :
https://doi.org/10.3390/ma15051655