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Micronized drug powders in binary mixtures and the effect of physical properties on aerosolization from combination drug dry powder inhalers

机译:二元混合物中的微粉化药物粉末及其物理性质对组合药物干粉吸入器雾化的影响

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Objectives: To evaluate physicochemical properties of two micronized drugs, salbutamol sulfate (SS) and beclomethasone dipropionate (BDP) prepared as dry powder inhalation physical blends. Methods: Five different blends of SS:BDP ratios of 0:100, 25:75, 50:50, 75:25, and 100:0 (w/w) were prepared. Aerosolization performance was evaluated using a multistage impinger and a Rotahaler? device. Results: The median SS particle diameter was larger than BDP (4.33 ± 0.37 μm compared to 2.99 ± 0.15 μm, respectively). The SS appeared to have a ribbon-like morphology, while BDP particles had plate-like shape with higher cohesion than SS. This was reflected in the aerosolization performance of the two drugs alone, where SS had a significantly higher fine particle fraction (FPF) than BDP (12.3%, 3.1% and 2.9%, 0.2%, respectively). The study of cohesion versus adhesion for a series of SS and BDP probes on SS and BDP substrates suggested both to be moderately adhesive, verified using scanning Raman microscopy, where a physical association between the two was observed. A plot of loaded versus emitted dose indicated that powder bed fluidization was significantly different when the drugs were tested individually. Furthermore, the FPF of the two drugs from the binary blends, at all three ratios, were similar. Conclusions: Such observations indicate that when these two drugs are formulated as a binary system, the resulting powder structure is altered and the aerosolization performance of each drug is not reflective of the individual drug performance. Such factors could have important implications and should be considered when developing combination dry powder inhalation systems.
机译:目的:评价两种微粉化药物硫酸沙丁胺醇(SS)和倍氯米松二丙酸酯(BDP)作为干粉吸入物理混合物制备的理化性质。方法:制备五种不同的SS:BDP比例为0:100、25:75、50:50、75:25和100:0(w / w)的混合物。使用多级撞击器和Rotahaler?评估雾化性能。设备。结果:SS的中值粒径大于BDP(分别为4.33±0.37μm和2.99±0.15μm)。 SS似乎呈带状形态,而BDP颗粒的板状形状比SS具有更高的内聚力。这反映在单独的两种药物的雾化性能上,SS的细颗粒分数(FPF)明显高于BDP(分别为12.3%,3.1%和2.9%,0.2%)。对在SS和BDP基板上的一系列SS和BDP探针的内聚力与粘附力的研究表明,两者均具有中等粘附力,这是通过扫描拉曼显微镜进行验证的,其中观察到两者之间的物理联系。负载量与发射剂量的关系图表明,当单独测试药物时,粉末床流化显着不同。此外,来自两种混合物的两种药物的FPF在所有三个比率下都相似。结论:这些观察结果表明,当将这两种药物配制成二元体系时,所形成的粉末结构会发生变化,并且每种药物的雾化性能均不能反映单个药物的性能。这些因素可能具有重要意义,在开发组合干粉吸入系统时应考虑这些因素。

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