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Development of a high efficiency dry powder inhaler: Effects of capsule chamber design and inhaler surface modifications

机译:高效干粉吸入器的开发:胶囊室设计和吸入器表面改性的影响

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Purpose: The objective of this study was to explore the performance of a high efficiency dry powder inhaler (DPI) intended for excipient enhanced growth (EEG) aerosol delivery based on changes to the capsule orientation and surface modifications of the capsule and device. Methods: DPIs were constructed by combining newly designed capsule chambers (CC) with a previously developed three-dimensional (3D) rod array for particle deagglomeration and a previously optimized EEG formulation. The new CCs oriented the capsule perpendicular to the incoming airflow and were analyzed for different air inlets at a constant pressure drop across the device. Modifications to the inhaler and capsule surfaces included use of metal dispersion rods and surface coatings. Aerosolization performance of the new DPIs was evaluated and compared with commercial devices. Results: The proposed capsule orientation and motion pattern increased capsule vibrational frequency and reduced the aerosol MMAD compared with commercial/modified DPIs. The use of metal rods in the 3D array further improved inhaler performance. Coating the inhaler and capsule with PTFE significantly increased emitted dose (ED) from the optimized DPI. Conclusions: High efficiency performance is achieved for EEG delivery with the optimized DPI device and formulation combination producing an aerosol with MMAD 1.5 μm, FPF5μm/ED 90%, and ED 80%.
机译:目的:本研究的目的是根据胶囊和装置的胶囊方向变化和表面改性,探索用于赋形剂增强生长(EEG)气雾剂输送的高效干粉吸入器(DPI)的性能。方法:DPI是通过将新设计的胶囊室(CC)与先前开发的用于颗粒解聚的三维(3D)杆阵列和先前优化的EEG配方相结合而构建的。新的CC使胶囊垂直于进入的气流定向,并在整个设备上以恒定的压降对不同的进气口进行了分析。对吸入器和胶囊表面的修改包括使用金属分散棒和表面涂层。评估了新DPI的雾化性能,并将其与商用设备进行了比较。结果:与商业/改良的DPI相比,拟议的胶囊取向和运动模式增加了胶囊的振动频率并降低了气溶胶MMAD。在3D阵列中使用金属棒可进一步改善吸入器性能。在吸入器和胶囊上涂以PTFE,可显着提高优化DPI的发射剂量(ED)。结论:优化的DPI装置和配方组合可实现高效的EEG输送,产生的气溶胶的MMAD <1.5μm,FPF <5μm/ ED> 90%和ED> 80%。

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