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Prediction of dry powder inhaler formulation performance from surface energetics and blending dynamics.

机译:从表面能学和混合动力学预测干粉吸入器配方性能。

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The purpose of these studies was to investigate the ability of surface energy measurements and rates of mixing in dry powder inhaler (DPI) formulations to predict aerosol dispersion performance. Two lactose carrier systems comprising either spray-dried or milled particles were developed such that they had identical physical characteristics except for surface morphology and surface energies avoiding confounding variables common in other studies. Surface energy measurements confirmed significant differences between the powder systems. Spray-dried lactose had a higher surface entropy (0.20 vs. 0.13 mJ/m(2)K) and surface enthalpy (103.2 vs. 79.2 mJ/m(2)) compared with milled lactose. Mixing rates of budesonide or fluorescein were assessed dynamically, and significant differences in blending were observed between lactose systems for both drugs. Surface energies of the lactose carriers were inversely proportional to dispersion performance. In addition, the root mean square (RMS) of blending rates correlated positively with aerosol dispersion performance. Both techniques have potential utility in routine screening of DPI formulations.
机译:这些研究的目的是研究表面能测量的能力和干粉吸入器(DPI)配方中的混合速率,以预测气溶胶的分散性能。开发了两种包含喷雾干燥或磨碎颗粒的乳糖载体系统,使它们具有相同的物理特性,除了表面形态和表面能外,避免了其他研究中常见的混淆变量。表面能测量结果证实了粉末系统之间的显着差异。与碾磨的乳糖相比,喷雾干燥的乳糖具有更高的表面熵(0.20对0.13 mJ / m(2)K)和表面焓(103.2对79.2 mJ / m(2))。动态评估布地奈德或荧光素的混合速率,并且两种药物的乳糖系统之间的混合均存在显着差异。乳糖载体的表面能与分散性能成反比。此外,混合速率的均方根(RMS)与气溶胶分散性能呈正相关。两种技术在DPI制剂的常规筛选中均具有潜在的实用性。

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