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干粉吸入器的流动与颗粒建模:方法、最新进展及新兴应用

Flow and Particle Modelling of Dry Powder Inhalers: Methodologies, Recent Development and Emerging Applications.

作者信息

Zheng Zhanying, Leung Sharon Shui Yee, Gupta Raghvendra

机构信息

Center for Turbulence Control, Harbin Institute of Technology, Shenzhen 518055, China.

School of Pharmacy, Faculty of Medicine, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong.

出版信息

Pharmaceutics. 2021 Feb 1;13(2):189. doi: 10.3390/pharmaceutics13020189.

Abstract

Dry powder inhaler (DPI) is a device used to deliver a drug in dry powder form to the lungs. A wide range of DPI products is currently available, with the choice of DPI device largely depending on the dose, dosing frequency and powder properties of formulations. Computational fluid dynamics (CFD), together with various particle motion modelling tools, such as discrete particle methods (DPM) and discrete element methods (DEM), have been increasingly used to optimise DPI design by revealing the details of flow patterns, particle trajectories, de-agglomerations and depositions within the device and the delivery paths. This review article focuses on the development of the modelling methodologies of flow and particle behaviours in DPI devices and their applications to device design in several emerging fields. Various modelling methods, including the most recent multi-scale approaches, are covered and the latest simulation studies of different devices are summarised and critically assessed. The potential and effectiveness of the modelling tools in optimising designs of emerging DPI devices are specifically discussed, such as those with the features of high-dose, pediatric patient compatibility and independency of patients' inhalation manoeuvres. Lastly, we summarise the challenges that remain to be addressed in DPI-related fluid and particle modelling and provide our thoughts on future research direction in this field.

摘要

干粉吸入器(DPI)是一种用于将干粉形式的药物输送到肺部的装置。目前有多种DPI产品可供选择,DPI装置的选择很大程度上取决于制剂的剂量、给药频率和粉末特性。计算流体动力学(CFD)与各种颗粒运动建模工具,如离散颗粒法(DPM)和离散元法(DEM),越来越多地用于通过揭示装置内和输送路径中的流动模式、颗粒轨迹、解聚和沉积细节来优化DPI设计。这篇综述文章重点关注DPI装置中流动和颗粒行为建模方法的发展及其在几个新兴领域的装置设计中的应用。涵盖了各种建模方法,包括最新的多尺度方法,并对不同装置的最新模拟研究进行了总结和批判性评估。特别讨论了建模工具在优化新兴DPI装置设计方面的潜力和有效性,例如那些具有高剂量、儿科患者兼容性和患者吸入动作独立性等特点的装置。最后,我们总结了DPI相关流体和颗粒建模中仍有待解决的挑战,并提供了我们对该领域未来研究方向的思考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25b2/7912775/4dfc50258bd3/pharmaceutics-13-00189-g001.jpg

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