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首页> 外文期刊>Acta biomaterialia >Ibuprofen-loaded calcium phosphate granules: combination of innovative characterization methods to relate mechanical strength to drug location.
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Ibuprofen-loaded calcium phosphate granules: combination of innovative characterization methods to relate mechanical strength to drug location.

机译:布洛芬加载磷酸钙颗粒:创新表征方法的组合将机械强度与药物定位相关。

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摘要

This paper studies the impact of the location of a drug substance on the physicochemical and mechanical properties of two types of calcium phosphate granules loaded with seven different contents of ibuprofen, ranging from 1.75% to 46%. These implantable agglomerates were produced by either low or high shear granulation. Unloaded Mi-Pro pellets presented higher sphericity and mechanical properties, but were slightly less porous than Kenwood granules (57.7% vs 61.2%). Nevertheless, the whole expected quantity of ibuprofen could be integrated into both types of granules. A combination of surface analysis, using near-infrared (NIR) spectroscopy coupling chemical imaging, and pellet porosity, by mercury intrusion measurements, allowed ibuprofen to be located. It was shown that, from 0% to 22% drug content, ibuprofen deposited simultaneously on the granule surface, as evidenced by the increase in surface NIR signal, and inside the pores, as highlighted by the decrease in pore volume. From 22%, porosity was almost filled, and additional drug substance coated the granule surfaces, leading to a large increase in the surface NIR signal. This coating was more regular for Mi-Pro pellets owing to their higher sphericity and greater surface deposition of drug substance. Unit crush tests using a microindenter revealed that ibuprofen loading enhanced the mechanical strength of granules, especially above 22% drug content, which was favorable to further application of the granules as a bone defect filler.
机译:本文研究了药物物质的位置对两种不同含有布洛芬含量的磷酸钙颗粒的物理化学和力学性能的影响,范围为1.75%至46%。通过低或高剪切造粒生产这些可植入的附聚物。卸载的MI-Pro颗粒呈现出更高的球形和机械性能,但比肯伍德颗粒略低于多孔(57.7%vs 61.2%)。然而,整个预期的布洛芬量可以整合到两种类型的颗粒中。表面分析的组合,使用近红外(NIR)光谱偶联化学成像和颗粒孔隙率,通过汞侵入测量,允许位于布洛芬。结果表明,从0%〜22%的药物含量,同时沉积在颗粒表面上的布洛芬,如表面NIR信号的增加所证明,通过孔体积的降低突出显示。从22%起,几乎填充孔隙率,另外的药物涂覆颗粒表面,导致表面NIR信号大幅增加。由于其较高的球形性和更高的药物表面沉积,该涂层更规则地为Mi-Pro粒料。使用微管门的单位压碎试验显示,布洛芬负载增强了颗粒的机械强度,特别是高于22%的药物含量,这有利于将颗粒作为骨缺损填料的进一步施用。

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