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Influence of modified induction port, modified DUSA assembly and device air-inlet geometry on the aerosolization pattern of a dry powder inhaler

机译:改性感应端口,改进的DUSA组装和装置空气入口几何对干粉吸入器雾化图案的影响

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摘要

The objective of the present investigation was to study the effect of inhaler air-inlet size, induction port (IP) geometry and modified dose unit sampling apparatus (DUSA) on the aerodynamic behavior of fluticasone propionate (FP) dry powder inhaler (DPI). The physicochemical properties of FP and inhalation grade lactose particles, such as particle size distribution, moisture content and surface morphology were assessed while developed FP DPI was assessed using energy-dispersive X-ray spectrometry. Afterward, the aerodynamic outcome of the FP DPI was evaluated by using Andersen cascade impactor (ACI) equipped with USP modified IP and inhaler devices with different air-inlet size. Likewise, modified DUSA assembly was used to assess the delivered dose uniformity (DDU) of FP DPI. Micronized irregular shaped FP (d90; 3.30) particles and lactose carriers (d90; 130.84) showed particle size suitable for inhalation. Furthermore, formulated FP FPI achieved good content uniformity (>97%). ACI analysis exhibited a remarkable difference in the stage-wise drug deposition pattern. In terms of FPF, Lupihaler? (uniform air-inlet) displayed 1.12-fold superior performance as compared to Lupihaler-T? (t-shaped air-inlet) device. Moreover, modified DUSA assembly exhibited consistent and reproducible delivered dose using both devices. This research work is a first thorough report of FP DPI using a USP-modified IP inhaler with devices signify the opposite ends of air inlet size. Hence, it can be of budding significance for both institutional and industrial research.
机译:本研究的目的是研究吸入器空气入口尺寸,感应端口(IP)几何形状和改性剂量单位采样装置(DUSA)对氟替卡松(FP)干粉吸入器(DPI)的空气动力学行为的影响。使用能量分散X射线光谱法评估FP和吸入级乳糖颗粒的物理化学性质,例如粒度分布,水分含量和表面形态,同时评估FP DPI。之后,通过使用具有不同空气入口尺寸的USP改装的IP和吸入器装置的Andersen级联撞击器(ACI)评估FP DPI的空气动力结果。同样地,改性的DUSA组件用于评估FP DPI的递送剂量均匀性(DDU)。微粉化不规则形FP(D90; 3.30)颗粒和乳糖载体(D90; 130.84)显示适合吸入的粒度。此外,配制的FP FPI实现了良好的含量均匀性(> 97%)。 ACI分析表现出阶段明智药物沉积图案的显着差异。在FPF,LupiHaler方面? (均匀的空气入口)与Lupihaler-T相比显示出1.12倍的优越性,呢? (T形空气入口)装置。此外,改性的Dusa组件使用两种装置表现出一致和可再现的剂量。本研究工作是FP DPI使用USP修改的IP吸入器与器件的第一个彻底报道,表示空气入口尺寸的相对端。因此,它可能对机构和工业研究的萌芽意义。

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