首页> 外文期刊>International Journal of Pharmaceutics >Air classifier technology (ACT) in dry powder inhalation. Part 1. Introduction of a novel force distribution concept (FDC) explaining the performance of a basic air classifier on adhesive mixtures.
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Air classifier technology (ACT) in dry powder inhalation. Part 1. Introduction of a novel force distribution concept (FDC) explaining the performance of a basic air classifier on adhesive mixtures.

机译:空气干粉吸入技术(ACT)。第1部分。介绍一种新颖的力分布概念(FDC),该概念解释了基本空气分级机在粘合剂混合物上的性能。

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摘要

Air classifier technology (ACT) is introduced as part of formulation integrated dry powder inhaler development (FIDPI) to optimise the de-agglomeration of inhalation powders. Carrier retention and de-agglomeration results obtained with a basic classifier concept are discussed. The theoretical cut-off diameter for lactose of the classifier used, is between 35 and 15 microm for flow rates ranging from 20 to 70 l/min. Carrier retention of narrow size fractions is higher than 80% for flow rates between 30 and 60 l/min, inhalation times up to 6s and classifier payloads between 0 and 30mg. The de-agglomeration efficiency for adhesive mixtures, derived from carrier residue (CR) measurement, increases both with increasing flow rate and inhalation time. At 30 l/min, 60% fine particle detachment can be obtained within 3s circulation time, whereas at 60 l/min only 0.5s is necessary to release more than 70%. More detailed information of the change of detachment rate within the first 0.5s of inhalation is obtained from laser diffraction analysis (LDA) of the aerosol cloud. The experimental results can be explained with a novel force distribution concept (FDC) which is introduced to better understand the complex effects of mixing and inhalation parameters on the size distributions of adhesion and removal forces and their relevance to the de-agglomeration in the classifier.
机译:引入空气分级器技术(ACT)作为配方集成干粉吸入器开发(FIDPI)的一部分,以优化吸入粉的解聚。讨论了使用基本分类器概念获得的载体保留和解聚结果。对于20至70 l / min的流速,所用分级机的乳糖的理论截断直径为35至15微米。当流速在30至60升/分钟之间,吸入时间长达6秒,分选器有效载荷在0至30毫克之间时,窄尺寸馏分的载体保留率高于80%。从载体残留物(CR)的测量得出的粘合剂混合物的解聚效率随流速和吸入时间的增加而增加。在30升/分钟的速度下,在3秒的循环时间内即可获得60%的细小颗粒脱离,而在60升/分钟的速度下,仅需要0.5秒钟即可释放出70%以上的微粒。从气溶胶云的激光衍射分析(LDA)中可以获得更详细的吸入前0.5s内变化率的信息。实验结果可以用新颖的力分布概念(FDC)进行解释,该概念被引入以更好地理解混合和吸入参数对粘附力和去除力的大小分布的复杂影响以及它们与分级机中解聚的相关性。

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