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Loading and release of doxycycline hyclate from strontium-substituted calcium phosphate cement.

机译:从锶取代的磷酸钙水泥加工和释放茂霉素杂环。

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摘要

Novel Sr-substituted calcium phosphate cement (CPC) loaded with doxycycline hyclate (DOXY-h) was employed to elucidate the effect of strontium substitution on antibiotic delivery. The cement was prepared using as reactants Sr-substituted beta-tricalcium phosphate (Sr-beta-TCP) and acidic monocalcium phosphate monohydrate. Two different methods were used to load DOXY-h: (i) the adsorption on CPC by incubating the set cement in drug-containing solutions; and (ii) the use of antibiotic solution as the cement liquid phase. The results revealed that the Sr-substituted cement efficiently adsorbs the antibiotic, which is attributed to an enhanced accessibility to the drug-binding sites within this CPC. DOXY-h desorption is influenced by the initial adsorbed amount and the cement matrix type. Furthermore, the fraction of drug released from CPCs set with DOXY-h solution was higher, and the release rate was faster for the CPC prepared with 26.7% Sr-beta-TCP. The analysis of releasing profiles points to Fickian diffusion as the mechanism responsible for antibiotic delivery. We can conclude that Sr substitution in secondary calcium phosphate cements improves their efficiency for DOXY-h adsorption and release. The antibiotic loading method provides a way to switch from rapid and complete to slower and prolonged drug release.
机译:用载有十二环杂环杂环杂碳(DOXY-H)的新型SR取代的磷酸钙水泥(CPC)阐明锶取代对抗生素递送的影响。使用用作反应物SR-取代的β-三钙(SR-Beta-TCP)和酸性单钙一水合物制备水泥。使用两种不同的方法来装载DOXY-H:(i)通过在含药物溶液中孵育固定水泥来吸附CPC; (ii)使用抗生素溶液作为水泥液相。结果表明,SR取代的水泥有效地吸附了抗生素,这归因于该CPC内的药物结合位点的可用性。 DOXY-H去吸收受初始吸附量和水泥基质类型的影响。此外,用DOXY-H溶液组的CPC释放的药物的级分较高,用26.7%SR-BETA-TCP制备的CPC释放速率更快。释放型材指向Fickian扩散的分析作为抗生素递送的机制。我们可以得出结论,二级磷酸钙水泥中的SR取代可以提高其对DOXY-H吸附和释放的效率。抗生素负载方法提供了一种从快速速度切换到较慢和长时间的药物释放方法的方法。

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