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首页> 外文期刊>International Journal of Pharmaceutics >Optical diagnostics studies of air flow and powder fluidisation in Nexthaler?. Part II: Use of fluorescent imaging to characterise transient release of fines from a dry powder inhaler
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Optical diagnostics studies of air flow and powder fluidisation in Nexthaler?. Part II: Use of fluorescent imaging to characterise transient release of fines from a dry powder inhaler

机译:内Xthaler气流和粉末流化的光学诊断研究。 第二部分:使用荧光成像以表征来自干粉吸入器的瞬时释放细粒

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摘要

The fine particle fraction is a key indicator of therapeutic effectiveness of inhaled pharmaceutical aerosols. This paper presents a fluorescence imaging technique to visualise and characterise the emission of active pharmaceutical ingredient (API) fines in model formulations containing coarse lactose carrier and 1.5–2?μm diameter fluorescent microspheres (model API fines). A two-camera arrangement was used to acquire simultaneous images of spatial and temporal distribution of model API fines and fluidised powder formulation near the mouthpiece exit of a DPI. Digital image analysis showed that the model API fines were released along with the bulk of the powder dose. More rapidly accelerating airflows were found to cause earlier release of API fines. The fluorescence imaging technique analyses a substantial fraction of the aerosol plume and was found to provide effective time-resolved characterisation of the de-aggregation and release of API fines with consistent results across a wide range of model API concentrations. Future studies should demonstrate the usefulness of the fluorescence imaging technique across different formulations and DPI devices.
机译:细颗粒分数是吸入药气气溶胶治疗有效性的关键指标。本文提出了一种荧光成像技术,用于可视化和表征含有粗乳糖载体的模型制剂中的活性药物成分(API)含量的发射,并含有粗乳糖载体和1.5-2Ω·μm直径荧光微球(模型API料)。用于在DPI的吹嘴出口附近获取模型API细粉的空间和时间分布的同时图像的两台相机布置和流化粉末制剂。数字图像分析表明,型号API含量与大量粉末剂量一起释放。发现更多快速加速的气流导致早期释放API罚款。荧光成像技术分析了气溶胶羽流的大部分,并且发现提供了有效的时间分辨表征API细分的释放,并且在各种模型API浓度上具有一致的结果。未来的研究应展示不同配方和DPI器件荧光成像技术的有用性。

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