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  • Sol-gel synthesis of quaternary (P2O5)55-(CaO)25-(Na2O)(20-x)-(TiO2) x bioresorbable glasses for bone tissue engineering applications (x = 0, 5, 10, or 15).

Sol-gel synthesis of quaternary (P2O5)55-(CaO)25-(Na2O)(20-x)-(TiO2) x bioresorbable glasses for bone tissue engineering applications (x = 0, 5, 10, or 15).

Biomedical materials (Bristol, England) (2015-08-27)
Farzad Foroutan, Nick J Walters, Gareth J Owens, Nicola J Mordan, Hae-Won Kim, Nora H de Leeuw, Jonathan C Knowles
ABSTRACT

In the present study, we report a new and facile sol-gel synthesis of phosphate-based glasses with the general formula of (P2O5)55-(CaO)25-(Na2O)(20-x)-(TiO2) x , where x = 0, 5, 10 or 15, for bone tissue engineering applications. The sol-gel synthesis method allows greater control over glass morphology at relatively low processing temperature (200 °C) in comparison with phosphate-based melt-derived glasses (~1000 °C). The glasses were analyzed using several characterization techniques, including x-ray diffraction (XRD), (31)P magic angle spinning nuclear magnetic resonance ((31)P MAS-NMR), Fourier transform infrared (FTIR) spectroscopy and energy-dispersive x-ray (EDX) spectroscopy, which confirmed the amorphous and glassy nature of the prepared samples. Degradation was assessed by measuring the ion release and pH change of the storage medium. Cytocompatibility was also confirmed by culturing osteoblast-like osteosarcoma cell line MG-63 on the glass microparticles over a seven-day period. Cell attachment to the particles was imaged using scanning electron microscopy (SEM) and confocal laser scanning microscopy (CLSM). The results revealed the potential of phosphate-based sol-gel derived glasses containing 5 or 10 mol% TiO2, with high surface area, ideal dissolution rate for cell attachment and easily metabolized dissolution products, for bone tissue engineering applications.

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Triton X-100, laboratory grade
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Isopropossido di titanio (IV), 97%
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Ioduro di propidio, ≥94.0% (HPLC)
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Hexamethyldisilazane, reagent grade, ≥99%
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Glutaraldeide, Grade I, 25% in H2O, specially purified for use as an electron microscopy fixative
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Formamide, ≥99.5% (GC), BioReagent, Molecular Biology
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2-metossietanolo, anhydrous, 99.8%
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Formamide, BioUltra, Molecular Biology, ≥99.5% (T)
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N,N-dimetilformammide, Molecular Biology, ≥99%
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Glutaraldeide, Grade II, 25% in H2O
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Glutaraldeide, 50 wt. % in H2O
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Sodium methoxide solution, 25 wt. % in methanol
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Isopropossido di titanio (IV), 99.999% trace metals basis
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Sodium methoxide, reagent grade, 95%, powder
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Hexamethyldisilazane, ReagentPlus®, 99.9%
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Isopropossido di titanio (IV), ≥97.0%
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Propidium iodide solution
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Sodium methoxide solution, ACS reagent, 0.5 M CH3ONa in methanol (0.5N)
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Glutaraldeide, Grade I, 50% in H2O, specially purified for use as an electron microscopy fixative or other sophisticated use
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Glutaraldeide, Grade I, 70% in H2O, specially purified for use as an electron microscopy fixative or other sophisticated use
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Glutaraldeide, Grade I, 8% in H2O, specially purified for use as an electron microscopy fixative or other sophisticated use
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Glutaraldeide, 50 wt. % in H2O, FCC
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Glutaraldeide, 50% in H2O, suitable for photographic applications
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Isopropossido di titanio (IV), packaged for use in deposition systems
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Metanolo, suitable for NMR (reference standard)
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Formamide solution, suitable for NMR (reference standard), 90% in DMSO-d6 (99.9 atom % D), NMR tube size 10 mm × 8 in.
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Formamide solution, suitable for NMR (reference standard), 90% in DMSO-d6 (99.9 atom % D), NMR tube size 5 mm × 8 in.