首页> 外文OA文献 >The Abbreviated Impactor Measurement (AIM) Concept: Part 1—Influence of Particle Bounce and Re-Entrainment—Evaluation with a “Dry” Pressurized Metered Dose Inhaler (pMDI)-Based Formulation
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The Abbreviated Impactor Measurement (AIM) Concept: Part 1—Influence of Particle Bounce and Re-Entrainment—Evaluation with a “Dry” Pressurized Metered Dose Inhaler (pMDI)-Based Formulation

机译:简易撞击器测量(AIM)概念:第1部分-颗粒弹跳和再夹带的影响-使用基于“干式”加压计量吸入器(pMDI)的配方进行评估

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摘要

The abbreviated impactor measurement concept is a potential improvement to the labor-intensive full-resolution cascade impactor methodology for inhaler aerosol aerodynamic particle size distribution (APSD) measurement by virtue of being simpler and therefore quicker to execute. At the same time, improved measurement precision should be possible by eliminating stages upon which little or no drug mass is collected. Although several designs of abbreviated impactor systems have been developed in recent years, experimental work is lacking to validate the technique with aerosols produced by currently available inhalers. In part 1 of this two-part article that focuses on aerosols produced by pressurized metered dose inhalers (pMDIs), the evaluation of two abbreviated impactor systems (Copley fast screening Andersen impactor and Trudell fast screening Andersen impactor), based on the full-resolution eight-stage Andersen nonviable cascade impactor (ACI) operating principle, is reported with a formulation producing dry particles. The purpose was to investigate the potential for non-ideal collection behavior associated with particle bounce in relation to internal losses to surfaces from which particles containing active pharmaceutical ingredient are not normally recovered. Both abbreviated impactors were found to be substantially equivalent to the full-resolution ACI in terms of extra-fine and fine particle and coarse mass fractions used as metrics to characterize the APSD of these pMDI-produced aerosols when sampled at 28.3 L/min, provided that precautions are taken to coat collection plates to minimize bounce and entrainment.
机译:简化的撞击器测量概念是对劳动密集型全分辨率级联撞击器方法的潜在改进,该方法用于吸入器气溶胶空气动力学粒径分布(APSD)测量,因为它更简单,因此执行起来也更快。同时,通过消除收集很少或没有药物量的步骤,应该有可能提高测量精度。尽管近年来已经开发了几种简化的撞击器系统设计,但仍缺乏实验性工作来验证该技术是否与目前可吸入的吸入器产生的气溶胶相吻合。在这个由两部分组成的文章的第1部分中,重点介绍了加压定量吸入器(pMDI)产生的气溶胶,基于全分辨率,评估了两个简短的撞击器系统(Copley快速筛选Andersen撞击器和Trudell快速筛选Andersen撞击器)。据报道,八级安徒生无生命级撞机(ACI)的工作原理是产生干燥颗粒的配方。目的是研究与粒子反弹有关的非理想收集行为的潜力,这些行为与表面的内部损失有关,而内部表面通常无法回收含有活性药物成分的粒子。在以28.3L / min的采样率提供的超细,细颗粒和粗质量分数方面,这两种缩写的撞击器均被认为与全分辨率ACI相当,这些特征可用来表征这些由pMDI产生的气溶胶的APSD采取预防措施以覆盖收集板,以最大程度地减少弹跳和夹带。

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