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Cobalt‐containing spherical glass nanoparticles for therapeutic ion release
Author(s) -
Barrioni Breno R.,
Carvalho Sandhra M.,
Naruphontjirakul Parichart,
Norris Elizabeth,
Kelly Nicole L.,
Hanna John V.,
Jones Julian R.,
Pereira Marivalda de M.
Publication year - 2022
Publication title -
journal of the american ceramic society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.9
H-Index - 196
eISSN - 1551-2916
pISSN - 0002-7820
DOI - 10.1111/jace.17916
Subject(s) - x ray photoelectron spectroscopy , nanoparticle , materials science , bioactive glass , magic angle spinning , ion , dissolution , cobalt , chemical engineering , nuclear chemistry , biophysics , nanotechnology , chemistry , nuclear magnetic resonance spectroscopy , stereochemistry , organic chemistry , engineering , metallurgy , composite material , biology
Bioactive glass nanoparticles (BGNPs) can be internalized by cells, allowing the intracellular release of dissolution products with therapeutic benefit. Different therapeutic ions can be incorporated into the glass network that can promote angiogenesis via simulation of hypoxia conditions and consequent activation of pro‐angiogenic genes. Here, novel monodispersed spherical dense BGNPs were obtained by a modified Stöber method with the SiO 2 –CaO–CoO composition, with diameters of 92 ± 1 nm, with cobalt as the pro‐angiogenic ion. The presence of Co 2+ species and the role of Co and Ca as network modifiers in the silica glass were confirmed by X‐ray photoelectron spectroscopy and 29 Si solid‐state magic‐angle spinning nuclear magnetic resonance, respectively. Controlled Co 2+ ion release was observed in culture media, and no cytotoxicity was observed by (4,5‐dimethylthiazol‐2‐yl)‐2,5‐diphenyl tetrazolium bromide cell viability assay on human osteosarcoma cells in direct contact with the nanoparticles. This study demonstrated that Co 2+ ions can be incorporated into dense and spherical BGNPs, and these materials exhibit great potential as intracellular ion delivery systems with therapeutic properties.

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