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A Novel Method of Preparing a Nanometer-Scale Rod Array of Hydroxyapatite Crystals

机译:一种制备羟基磷灰石晶体纳米棒阵列的新方法

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摘要

This study proposed a new strategy for preparing self-assembling one-dimensional HAp nanorods into organized superstructures. We employed glass of a few specific compositions in the system Na2O-CaO-SiO2 because it may yield Si-OH groups on the surface when soaked in an aqueous system, and their formation is one of the key factors to induce apatite nucleation. A nanometerscale rod array of HAp having preferred orientation to the c-axis was successfully prepared simply by soaking the soda-lime silica glass substrates in Na2HPO4 aqueous solution at 80 ?°C. Those HAp rods grew up perpendicularly to the glass surface, and the crystallites covered glass surface uniformly, resulting in a€?dental enamel-likea€? rod array structure. The present procedure is significant as it allows to design biomimetic materials and therapeutic agents with applicable both the biomedical and material science fields because the nano-textured HAp crystals exhibit a hierarchical architecture and may provide specific cell attachment and proliferation with controlled planes of growth and nano- and micrometer-scale topography.
机译:这项研究提出了一种新的策略,用于将自组装的一维HAp纳米棒制备为有组织的上层建筑。我们在Na2O-CaO-SiO2系统中使用了一些特定组成的玻璃,因为当将其浸泡在水性系统中时,它可能在表面上产生Si-OH基团,它们的形成是引起磷灰石成核的关键因素之一。只需将钠钙硅玻璃基板在80°C的Na2HPO4水溶液中浸泡,即可成功制备出具有沿c轴定向的HAp纳米级棒状阵列。那些HAp棒垂直于玻璃表面长大,微晶均匀地覆盖在玻璃表面上,从而形成“牙釉质样”。杆阵列结构。本程序意义重大,因为它允许设计适用于生物医学和材料科学领域的仿生材料和治疗剂,因为纳米质感的HAp晶体显示出层次结构,并可以在受控的生长和纳米平面下提供特定的细胞附着和增殖。 -和微米级地形。

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