For bone replacement materials, osteoconductive, osteoinductive, and osteogenic properties are desired. The bacterial resistance and the need for new antibacterial strategies stand among the most challenging tasks of the modern medicine. In this work, brushite cements based on powders of Zinc (Zn) (1.4 wt%) substituted tricalcium phosphate (?-TCP) and non-substituted ?-TCP were prepared and investigated. Their initial and final phase composition, time of setting, morphology, pH evolution, and compressive strength are reported. After soaking for 60 days in physiological solution, the cements transformed into a mixture of brushite and hydroxyapatite. Antibacterial activity of the cements against Enterococcus faecium, Escherichia coli, and Pseudomonas aeruginosa bacteria strains was attested. The absence of cytotoxicity of cements was proved for murine fibroblast NCTC L929 cells. Moreover, the cell viability on the ?-TCP cement containing Zn ions was 10% higher compared to the ?-TCP cement without zinc. The developed cements are perspective for applications in orthopedics and traumatology. [Figure not available: see fulltext.]

Improved cytocompatibility and antibacterial properties of zinc-substituted brushite bone cement based on alpha-tricalcium phosphate

Fosca M.;Rau J. V.
Ultimo
2021

Abstract

For bone replacement materials, osteoconductive, osteoinductive, and osteogenic properties are desired. The bacterial resistance and the need for new antibacterial strategies stand among the most challenging tasks of the modern medicine. In this work, brushite cements based on powders of Zinc (Zn) (1.4 wt%) substituted tricalcium phosphate (?-TCP) and non-substituted ?-TCP were prepared and investigated. Their initial and final phase composition, time of setting, morphology, pH evolution, and compressive strength are reported. After soaking for 60 days in physiological solution, the cements transformed into a mixture of brushite and hydroxyapatite. Antibacterial activity of the cements against Enterococcus faecium, Escherichia coli, and Pseudomonas aeruginosa bacteria strains was attested. The absence of cytotoxicity of cements was proved for murine fibroblast NCTC L929 cells. Moreover, the cell viability on the ?-TCP cement containing Zn ions was 10% higher compared to the ?-TCP cement without zinc. The developed cements are perspective for applications in orthopedics and traumatology. [Figure not available: see fulltext.]
2021
Istituto di Struttura della Materia - ISM - Sede Roma Tor Vergata
zinc-substituted brushite bone cement
tricalcium phosphate
cytocompatibility
antibacterial properties
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/437844
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