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首页> 外文期刊>European journal of pharmaceutical sciences >In vitro elution of vancomycin from biodegradable osteoconductive calcium phosphate-polycaprolactone composite beads for treatment of osteomyelitis
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In vitro elution of vancomycin from biodegradable osteoconductive calcium phosphate-polycaprolactone composite beads for treatment of osteomyelitis

机译:从可生物降解的骨传导性磷酸钙-聚己内酯复合珠粒中洗脱万古霉素以治疗骨髓炎

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摘要

In this work, osteoconductive composite materials comprising a large volume fraction of a bioresorbable calcium phosphate ceramic (CaP) and a smaller amount of a polycaprolactone polymer (PCL) were studied as a degradable antibiotic carrier material for treatment of osteomyelitis. Beads loaded with 1 and 4 wt.% vancomycin were prepared by admixing dissolved drug to an in situ synthesized dicalcium phosphate (DCP)-PCL or solution-mixed beta-tricalcium phosphate (pTCP)-PCL composite powder followed by high pressure consolidation of the blend at room temperature. Vancomycin release was measured in phosphate-buffered saline (PBS) at 37 °C. All the beads gradually released the drug over the period of 4-11 weeks, depending on the composite matrix homogeneity and porosity. Mathematical modeling using the Peppas equation showed that vancomycin elution was diffusion controlled. The stability of the antibiotic after high pressure application at room temperature was demonstrated by high-performance liquid chromatography-mass spectrometry (HPLC-MS) studies and MIC testing. The preservation of the structure and activity of Vancomycin during the processing of composite beads and its sustained in vitro release profile suggest that high pressure consolidated CaP-PCL beads may be useful in the treatment of chronic bone infections as resorbable delivery vehicles of vancomycin and even of thermally unstable drug substances.
机译:在这项工作中,骨传导复合材料被用作治疗骨髓炎的可降解抗生素载体材料,该材料包含大量生物可吸收的磷酸钙陶瓷(CaP)和少量的聚己内酯聚合物(PCL)。通过将溶解的药物混合到原位合成的磷酸二钙(DCP)-PCL或溶液混合的β-磷酸三钙(pTCP)-PCL复合粉末中,然后将其高压固结,来制备载有1%和4%重量的万古霉素的珠子。在室温下混合。在37°C的磷酸盐缓冲液(PBS)中测量万古霉素的释放。根据复合基质的均质性和孔隙率,所有珠子在4-11周内逐渐释放药物。使用Peppas方程的数学模型表明,万古霉素洗脱是扩散控制的。高效液相色谱-质谱(HPLC-MS)研究和MIC测试证明了室温下高压应用后抗生素的稳定性。复合珠加工过程中万古霉素的结构和活性的保持及其持续的体外释放特性表明,高压固结的CaP-PCL珠可作为万古霉素甚至可吸收的可再吸收载体,用于治疗慢性骨感染。热不稳定药物。

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