首页> 美国卫生研究院文献>AAPS PharmSciTech >The Abbreviated Impactor Measurement (AIM) Concept: Part II—Influence of Evaporation of a Volatile Component—Evaluation with a Droplet-Producing Pressurized Metered Dose Inhaler (pMDI)-Based Formulation Containing Ethanol as Cosolvent
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The Abbreviated Impactor Measurement (AIM) Concept: Part II—Influence of Evaporation of a Volatile Component—Evaluation with a Droplet-Producing Pressurized Metered Dose Inhaler (pMDI)-Based Formulation Containing Ethanol as Cosolvent

机译:简化的撞击器测量(AIM)概念:第二部分-挥发性组分的蒸发影响-使用产生液滴的加压计量吸入器(pMDI)为基础的配方其中含有乙醇作为助溶剂

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摘要

The abbreviated impactor measurement (AIM) concept is a potential solution to the labor-intensive full-resolution cascade impactor (CI) methodology for inhaler aerosol aerodynamic particle size measurement. In this validation study, the effect of increasing the internal dead volume on determined mass fractions relating to aerodynamic particle size was explored with two abbreviated impactors both based on the Andersen nonviable cascade impactor (ACI) operating principle (Copley fast screening Andersen impactor [C-FSA] and Trudell fast screening Andersen impactor [T-FSA]). A pressurized metered dose inhaler-delivered aerosol producing liquid ethanol droplets after propellant evaporation was chosen to characterize these systems. Measures of extrafine, fine, and coarse particle mass fractions from the abbreviated systems were compared with corresponding data obtained by a full-resolution ACI. The use of liquid ethanol-sensitive filter paper provided insight by rendering locations visible where partly evaporated droplets were still present when the “droplet-producing” aerosol was sampled. Extrafine particle fractions based on impactor-sized mass were near equivalent in the range 48.6% to 54%, comparing either abbreviated system with the benchmark ACI-measured data. The fine particle fraction of the impactor-sized mass determined by the T-FSA (94.4 ± 1.7%) was greater than using the C-FSA (90.5 ± 1.4%) and almost identical with the ACI-measured value (95.3 ± 0.4%). The improved agreement between T-FSA and ACI is likely the result of increasing the dead space between the entry to the induction port and the uppermost impaction stage, compared with that for the C-FSA. This dead space is needed to provide comparable conditions for ethanol evaporation in the uppermost parts of these impactors.
机译:缩写撞击器测量(AIM)概念是劳力密集型全分辨率级联撞击器(CI)方法用于吸入器气溶胶空气动力学粒度测量的潜在解决方案。在此验证研究中,使用两个简短的撞击器(基于Andersen非可行级联撞击器(ACI)的工作原理)(Copley快速筛选Andersen撞击器[C-],探讨了增加内部死体积对与空气动力学粒径相关的确定质量分数的影响) FSA]和Trudell快速筛选安徒生撞击器[T-FSA])。选择推进剂蒸发后加压计量吸入器输送的可产生液态乙醇液滴的气溶胶来表征这些系统。将来自缩写系统的超细,细和粗颗粒质量分数的测量值与通过全分辨率ACI获得的相应数据进行比较。液体乙醇敏感的滤纸的使用通过使在“产生液滴的”气溶胶采样时仍然可见部分蒸发的液滴的位置可见而提供了见识。将两种缩写系统与基准ACI测得的数据进行比较,基于撞击器大小的质量的超细颗粒分数几乎相等,范围为48.6%至54%。由T-FSA测定的撞击物大小质量的细小颗粒分数(94.4±1.7%)大于使用C-FSA的撞击物大小的细粒分数(90.5±1.4%),并且与ACI测量值几乎相同(95.3±0.4%) )。与C-FSA相比,T-FSA和ACI之间更好的一致性可能是由于增加了进入进气口的入口与最高撞击级之间的死区。需要这些死空间为这些撞击器最上部的乙醇蒸发提供可比较的条件。

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