| Literature DB >> 24681375 |
Katrin Hurle1, Juergen Neubauer2, Marc Bohner3, Nicola Doebelin3, Friedlinde Goetz-Neunhoeffer2.
Abstract
Powders of α-tricalcium phosphate (α-TCP), which readily react with water to form calcium-deficient hydroxyapatite (CDHA), are frequently used in bone cements. As, for clinical applications, it is important to adjust the setting reaction of the cements to a reasonable reaction time, exact knowledge of the hydration mechanism is essential. It is known that prolonged milling results in partial amorphization of α-TCP powders and that dissolution of the amorphous phase significantly accelerates the hydration, but it is not clear yet when the amorphous phase reacts in comparison to the crystalline α-TCP. Therefore the aim of this study was to investigate the development of quantitative phase content of α-TCP samples during hydration. For this purpose, three α-TCP powders, containing 0, 16 and 71wt.% of amorphous phase (ATCP), were mixed with either deionized water or a 0.1M Na2HPO4 aqueous solution. The crystalline evolution of the paste was assessed quantitatively during the first 48h of hydration at 23°C by G-factor quantification. The present investigations demonstrate that ATCP reacted earlier than crystalline α-TCP. The results also suggest the formation of an X-ray amorphous phase during the hydraulic conversion formation of α-TCP into CDHA.Entities:
Keywords: Amorphization; Bone substitute; CDHA; Calcium phosphate cement; Quantitative in situ XRD
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Year: 2014 PMID: 24681375 DOI: 10.1016/j.actbio.2014.03.017
Source DB: PubMed Journal: Acta Biomater ISSN: 1742-7061 Impact factor: 8.947