Bioactive borate glass scaffold for bone tissue engineering

Borate glass particles and microspheres with size distributions in the range of approximately 100–400μm, were loosely compacted and sintered for 10min at 600°C to form a porous, three-dimensional construct (porosity 25–40%). Conversion of the borate glass to hydroxyapatite was investigated by soakin...

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Veröffentlicht in:Journal of non-crystalline solids 2008-03, Vol.354 (15-16), p.1690-1696
Hauptverfasser: Liang, Wen, Rahaman, Mohamed N., Day, Delbert E., Marion, Nicholas W., Riley, Gwendolen C., Mao, Jeremy J.
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Sprache:eng
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Zusammenfassung:Borate glass particles and microspheres with size distributions in the range of approximately 100–400μm, were loosely compacted and sintered for 10min at 600°C to form a porous, three-dimensional construct (porosity 25–40%). Conversion of the borate glass to hydroxyapatite was investigated by soaking the constructs in a solution of K2HPO4 (0.25M) at 37°C and with a pH value of 9.0, and measuring the weight loss of the constructs as a function of time. Almost full conversion of the borate glass to hydroxyapatite was achieved in less than 6days. X-ray diffraction revealed an initially amorphous product that subsequently crystallized to hydroxyapatite. The biocompatibility of the porous constructs was investigated by in vitro cell culture with human mesenchymal stem cells derived from bone marrow (bMSC) and human mesenchymal stem cell derived osteoblasts (MSC-Ob). The cells adhered to the scaffolds and the MSC-Obs produced alkaline phosphatase which is an indication of osteogenic differentiation. The data suggest strong bioactive characteristics for the borate glass constructs and the potential use of the constructs as scaffolds for tissue engineering of bone.
ISSN:0022-3093
1873-4812
DOI:10.1016/j.jnoncrysol.2007.10.003