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Spray-drying-derived amorphous calcium phosphate: a multi-scale characterization

机译:喷雾干燥衍生的无定形磷酸钙:多尺度表征

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摘要

Amorphous calcium orthophosphates (ACP) are bioactive compounds presenting high interest as bone substitute. However, the synthesis of such metastable products requires special attention as they can rapidly evolve into a crystalline phase during the elaboration process. The resulting increased stability generally leads to less bioactive reactive materials. Among the various strategies developed to obtain stable form of ACP, the use of spray drying is an effective and reproducible route. Compared to previous works, this study aims to demonstrate for the first time the feasibility of ACP elaboration by spray drying directly from a single solution of selected precursors. Moreover, structuration of the spray-dried powders was determined at different length scales, demonstrating a hierarchical organization from nanometric clusters to particles aggregates. These complementary analyses highlighted a thorough mechanism of particles formation during processing. The effect of the initial composition of the solution was observed, and it was demonstrated that there is a correlation with the purity of the final product that may be modulated. In addition, ACP powders were found to be highly reactive in aqueous medium and their fast transformation into low crystalline apatite suggests a good suitability for biomedical use.
机译:无定形正磷酸钙 (ACP) 是生物活性化合物,作为骨替代品具有很高的价值。然而,这种亚稳态产物的合成需要特别注意,因为它们在细化过程中会迅速演变成晶相。由此产生的稳定性增加通常会导致活性物质的生物活性降低。在为获得稳定形式的ACP而开发的各种策略中,使用喷雾干燥是一种有效且可重复的途径。与以往的工作相比,本研究旨在首次证明通过直接从选定前体的单一溶液中喷雾干燥来制备ACP的可行性。此外,在不同长度尺度上测定了喷雾干燥粉末的结构,展示了从纳米团簇到颗粒聚集体的层次结构。这些互补的分析突出了加工过程中颗粒形成的彻底机制。观察到溶液初始成分的影响,并证明与可以调节的最终产物的纯度存在相关性。此外,还发现ACP粉末在水性介质中具有高反应性,并且它们快速转化为低结晶磷灰石表明其非常适合生物医学用途。

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