Department for Functional Materials in Medicine and Dentistry, University of Würzburg, Würzburg, Germany.
J Mater Sci Mater Med. 2012 Nov;23(11):2631-7. doi: 10.1007/s10856-012-4740-1. Epub 2012 Aug 19.
Secondary protonated calcium phosphates such as brushite (CaHPO(4)·2H(2)O) or monetite (CaHPO(4)) have a higher resorption potential in bone defects than sintered ceramics, e.g. tricalcium phosphate or hydroxyapatite. However, processing of these phosphates to monolithic blocks or granules is not possible by sintering due to thermal decomposition of protonated phosphates at higher temperatures. In this study a low temperature technique for the preparation of spherical brushite granules in a cement setting reaction is presented. These granules were synthesized by dispersing a calcium phosphate cement paste composed of β-tricalcium phosphate and monocalcium phosphate together with a surfactant to an oil/water emulsion. The reaction products were characterized regarding their size distribution, morphology, and phase composition. Clinically relevant granule sizes ranging from 200 μm to 1 mm were obtained, whereas generally smaller granules were received with higher oil viscosity, increasing temperature or higher powder to liquid ratios of the cement paste. The hardened granules were microporous with a specific surface area of 0.7 m(2)/g and consisted of plate-like brushite (>95 % according to XRD) crystals of 0.5-7 μm size. Furthermore it was shown that the granules may be also used for drug delivery applications. This was demonstrated by adsorption of vancomycin from an aqueous solution, where a load of 1.45-1.88 mg drug per g granules and an almost complete release within 2 h was obtained.
次生质子化磷酸钙,如磷灰石(CaHPO(4)·2H(2)O)或单水磷酸氢钙(CaHPO(4)),在骨缺损中的吸收潜力高于烧结陶瓷,如磷酸三钙或羟基磷灰石。然而,由于质子化磷酸盐在较高温度下的热分解,这些磷酸盐无法通过烧结加工成整体块状或颗粒状。在这项研究中,提出了一种在水泥凝固反应中制备球形磷灰石颗粒的低温技术。这些颗粒是通过将由β-磷酸三钙和一水磷酸钙组成的磷酸钙水泥浆与表面活性剂分散到油/水乳液中来合成的。对反应产物的粒径分布、形态和相组成进行了表征。获得了临床相关的粒径范围为 200 μm 至 1 mm 的颗粒,而随着油的粘度、温度或水泥浆的粉末与液体的比例增加,通常会得到更小的颗粒。硬化的颗粒具有微孔结构,比表面积为 0.7 m(2)/g,由 0.5-7 μm 大小的板状磷灰石(根据 XRD 分析>95%)晶体组成。此外,还表明这些颗粒也可用于药物输送应用。通过从水溶液中吸附万古霉素来证明这一点,每克颗粒吸附 1.45-1.88 毫克药物,几乎在 2 小时内完全释放。