A glass belonging to the system SiO2–P2O5–CaO–MgO–Na2O–K2O was modified by introducing two different amounts of manganese oxide (MnO). Mn-doped glasses were prepared by melt and quenching technique and characterized bymeans of X-ray diffraction (XRD), scanning electron microscopy (SEM) observation and energy dispersion spectrometry (EDS) analysis. In vitro bioactivity test in simulated body fluid (SBF) showed a slight decrease in the reactivity kinetics ofMn-doped glasses compared to the glass used as control; however the glasses maintained a good degree of bioactivity. Mn-leaching test in SBF and minimum essential medium (MEM) revealed fluctuating trends probably due to a re-precipitation of Mn compounds during the bioactivity process. Cellular tests showed that all the Mn-doped glasses, up to a concentration of 50 μg/cm2 (μg of glass powders/cm2 of cell monolayer), did not produce cytotoxic effects on human MG-63 osteoblasts cultured for up to 5 days. Finally, biocompatibility tests demonstrated a good osteoblast proliferation and spreading onMn-doped glasses and most of all that the Mn-doping can promote the expression of alkaline phosphatase (ALP) and some bone morphogenetic proteins (BMPs).

In vitro study of manganese-doped bioactive glasses for bone regeneration

MAINA, Giovanni;ROSSI, Federica;BERGANDI, Loredana;GHIGO, Dario Antonio;SARACINO, Silvia;Maggiora M;CANUTO, Rosa Angela;MUZIO, Giuliana;
2014-01-01

Abstract

A glass belonging to the system SiO2–P2O5–CaO–MgO–Na2O–K2O was modified by introducing two different amounts of manganese oxide (MnO). Mn-doped glasses were prepared by melt and quenching technique and characterized bymeans of X-ray diffraction (XRD), scanning electron microscopy (SEM) observation and energy dispersion spectrometry (EDS) analysis. In vitro bioactivity test in simulated body fluid (SBF) showed a slight decrease in the reactivity kinetics ofMn-doped glasses compared to the glass used as control; however the glasses maintained a good degree of bioactivity. Mn-leaching test in SBF and minimum essential medium (MEM) revealed fluctuating trends probably due to a re-precipitation of Mn compounds during the bioactivity process. Cellular tests showed that all the Mn-doped glasses, up to a concentration of 50 μg/cm2 (μg of glass powders/cm2 of cell monolayer), did not produce cytotoxic effects on human MG-63 osteoblasts cultured for up to 5 days. Finally, biocompatibility tests demonstrated a good osteoblast proliferation and spreading onMn-doped glasses and most of all that the Mn-doping can promote the expression of alkaline phosphatase (ALP) and some bone morphogenetic proteins (BMPs).
2014
38
107
118
Genetic design; Mn-doped glasses; Bioactivity; Cytotoxicity
Miola M; Vitale Brovarone C; Maina G; Rossi F; Bergandi L; Ghigo D; Saracino S; Maggiora M; Canuto RA; Muzio G; Verne' E
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/143321
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