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Preparation and evaluation of spherical Ca-defkient hydroxyapatite granules with controlled surface microstructure as drug carriers

机译:表面微结构可控的球形钙定形羟基磷灰石颗粒的制备与评价

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摘要

Spherical Ca-deficient hydroxyapatite (HA) granules are expected to be useful drug carriers in bony sites because of their bone regeneration and adsorption ability. In order to control drug loading and release ability of the granules, a controlled surface microstructure was constructed. Spherical Ca-deficient granules composed of micron-sized rod-shaped particles were prepared by hydrothermal treatment of α-tricalcium phosphate (α-TCP) granules, and then, submicron HA particles were precipitated on the obtained granules by immersion in a supersaturated calcium phosphate (CP) solution. When bovine serum albumin was used as a drug model, precipitation of submicron particles causes the loading capability to increase and the release rate to decrease. The spherical Ca-deficient HA granules with the controlled surface microstructure are expected to be useful drug carriers that can act as scaffolds for bone repair.
机译:球形缺钙的羟基磷灰石(HA)颗粒由于其骨再生和吸附能力,有望在骨部位成为有用的药物载体。为了控制颗粒的药物负载和释放能力,构建了受控的表面微观结构。通过对α-磷酸三钙(α-TCP)颗粒进行水热处理,制得由微米级棒状颗粒组成的球形缺钙颗粒,然后将其浸入过饱和磷酸钙中,在获得的颗粒上沉淀出亚微米级HA颗粒。 (CP)解决方案。当使用牛血清白蛋白作为药物模型时,亚微米颗粒的沉淀会导致负载能力增加而释放速率降低。具有受控的表面微观结构的球形缺钙HA颗粒有望成为有用的药物载体,可用作骨修复的支架。

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