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Aerodynamic and Electrostatic Properties of Model Dry Powder Aerosols: a Comprehensive Study of Formulation Factors

机译:模型干粉气溶胶的空气动力学和静电性能:配方因素的综合研究

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摘要

The impact of formulation variables on aerodynamic and electrostatic properties of dry powder aerosol particles is of great importance to the development of efficient and reproducible inhaler products. Systematic evaluation requires a well-designed series of experiments using appropriate methods. A factorial experimental design was employed. In broad terms, the conditions considered were two drugs, albuterol and budesonide, in combination with different excipients, drug concentrations, delivered doses, and metering system (capsule composition) and sampled under different flow conditions using standard entrainment tubes. Samples were collected in an electrical low-pressure impactor, to evaluate distribution of electrostatic properties, and an Andersen eight-stage nonviable cascade impactor, to estimate aerodynamic particle size distribution, concurrently. The deposition studies allowed calculation of approximate per particle charge levels for drug. The results showed very high particle charge levels, often in the 1,000–10,000 of elementary charges per particle range, orders of magnitude higher than charge levels predicted by the Boltzmann charge distribution. The charge levels are considerably higher than had previously been estimated (200e per particle).
机译:配方变量对干粉气雾剂颗粒的空气动力学和静电性能的影响对开发高效且可重现的吸入器产品至关重要。系统评价需要使用适当的方法进行一系列精心设计的实验。采用析因实验设计。从广义上讲,考虑的条件是沙丁胺醇和布地奈德两种药物,结合不同的赋形剂,药物浓度,递送剂量和计量系统(胶囊组成),并使用标准夹带管在不同流动条件下取样。同时在电动低压撞击器中收集样品以评估静电性能的分布,并在Andersen八级不可行级联撞击器中收集样品,以同时估算空气动力学粒度分布。沉积研究允许计算药物的近似每粒子电荷水平。结果显示出非常高的粒子电荷水平,通常在每个粒子范围内基本电荷为1,000–10,000,比玻耳兹曼电荷分布预测的电荷水平高几个数量级。电荷水平大大高于先前估计的水平(每个粒子200e)。

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