Henry Moseley X-ray Imaging Facility, Department of Materials, The University of Manchester, Manchester M13 9PL, UK; National Facility for Laboratory X-ray Computed Tomography, The University of Manchester, Manchester M13 9PL, UK; Henry Royce Institute for Advanced Materials, Oxford Road, Manchester M13 9PL, UK; Seda Pharmaceutical Development Services, Unit D, Oakfield Road, Cheadle Royal Business Park, Stockport SK8 3GX, UK.
School of Life and Medical Sciences, University of Hertfordshire, College Lane, Hatfield AL10 9AB, UK.
Eur J Pharm Biopharm. 2023 Oct;191:265-275. doi: 10.1016/j.ejpb.2023.08.016. Epub 2023 Aug 30.
Dry powder inhalers (DPI) are important for topical drug delivery to the lungs, but characterising the pre-aerosolised powder microstructure is a key initial step in understanding the post-aerosolised blend performance. In this work, we characterise the pre-aerosolised 3D microstructure of an inhalation blend using correlative multi-scale X-ray Computed Tomography (XCT), identifying lactose and drug-rich phases at multiple length scales on the same sample. The drug-rich phase distribution across the sample is shown to be homogeneous on a bulk scale but heterogeneous on a particulate scale, with individual clusters containing different amounts of drug-rich phase, and different parts of a carrier particle coated with different amounts of drug-rich phase. Simple scalings of the drug-rich phase thickness with carrier particle size are used to derive the drug-proportion to carrier particle size relationship. This work opens new doors to micro-structural assessment of inhalation powders that could be invaluable for bioequivalence assessment of dry powder inhalers.
干粉吸入器(DPI)对于肺部的局部药物递送非常重要,但描述预雾化粉末的微观结构是理解气溶胶化后混合物性能的关键初始步骤。在这项工作中,我们使用相关的多尺度 X 射线计算机断层扫描(XCT)来描述吸入混合物的预雾化 3D 微观结构,在同一样品上的多个长度尺度上识别乳糖和药物富相。结果表明,药物富相在样品的整体尺度上分布均匀,但在颗粒尺度上不均匀,单个颗粒簇中含有不同量的药物富相,载体颗粒的不同部分涂覆有不同量的药物富相。简单地将药物富相厚度与载体颗粒尺寸进行标度,可以推导出药物与载体颗粒尺寸的关系。这项工作为吸入粉末的微观结构评估开辟了新的途径,这对于干粉吸入器的生物等效性评估可能非常有价值。