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用于药物干粉气溶胶纳米化学分析的光热红外光谱学。

Optical photothermal infrared spectroscopy for nanochemical analysis of pharmaceutical dry powder aerosols.

机构信息

Advanced Drug Delivery Group, Sydney Pharmacy School, Faculty of Medicine and Health, The University of Sydney, NSW 2006, Australia.

Department of Chemical & Biological Engineering, Monash University, Clayton, Victoria 3800, Australia.

出版信息

Int J Pharm. 2023 Feb 5;632:122563. doi: 10.1016/j.ijpharm.2022.122563. Epub 2022 Dec 28.

Abstract

The aim of this research was to chemically analyse the distribution of drugs and excipients in pharmaceutical dry powder inhalation (DPI) aerosol particles of various sizes in solid state. The conventional wet assay of the chemical composition of particles after collection in a cascade impactor lacks the capability to differentiate spatially resolved morphology and chemical composition of particles in complex DPI formulations. In this proof-of-concept study, we aim to demonstrate the feasibility of using optical photothermal infrared spectroscopy (O-PTIR) to characterize micro- to nano-scale chemical composition of size-segregated particles of pharmaceutical DPI formulations. These formulations were prepared by spray drying a solution or a suspension comprising an inhaled corticosteroid fluticasone propionate, a long-acting β2-agonist salmeterol xinafoate, and excipient lactose. The active ingredients fluticasone propionate and salmeterol xinafoate are widely used for the treatment of asthma and chronic obstructive pulmonary disease. Spatially resolved O-PTIR spectra acquired from the particles collected from stages 1-7 of a Next Generation Impactor (NGI) for both formulations confirmed the presence of peaks related to fluticasone propionate (1746 cm, 1702 cm, 1661 cm and 1612 cm), salmeterol xinafoate (1582 cm), and lactose (1080 cm). There was no significant difference in the drug to lactose peak ratio among various size fractions of particles spray dried from solution indicating a homogeneity in drug and lactose content in the aerosol formulation. In contrast, the suspension-spray dried formulation showed the drug content increased while the lactose content decreased in the particles collected down the NGI from stage 1 to stage 7, indicating heterogeneity in the ratio of drug-excipient distribution. The qualitative chemical compositions from O-PTIR were comparable to conventional wet chemical assays of various size fractions, indicating the suitability of O-PTIR to serve as a valuable analytical platform for screening the physicochemical properties of DPIs in solid state.

摘要

本研究旨在通过化学分析的方法,研究不同粒径的固态药物干粉吸入剂(DPI)气溶胶颗粒中药物和赋形剂的分布情况。在级联撞击器中收集颗粒后进行常规的湿法分析,缺乏区分复杂 DPI 制剂中颗粒的空间分辨形貌和化学组成的能力。在这项概念验证研究中,我们旨在证明使用光学光热红外光谱(O-PTIR)来表征药物 DPI 制剂的大小分离颗粒的微到纳米尺度的化学组成的可行性。这些制剂是通过喷雾干燥溶液或混悬液制备的,其中包含吸入性皮质类固醇丙酸氟替卡松、长效β2-激动剂沙美特罗辛酸钠和赋形剂乳糖。活性成分丙酸氟替卡松和沙美特罗辛酸钠广泛用于治疗哮喘和慢性阻塞性肺疾病。从下一代撞击器(NGI)的 1-7 级收集的颗粒中获得的空间分辨 O-PTIR 光谱证实了存在与丙酸氟替卡松(1746 cm、1702 cm、1661 cm 和 1612 cm)、沙美特罗辛酸钠(1582 cm)和乳糖(1080 cm)相关的峰。从溶液喷雾干燥的颗粒的各个粒径级分中,药物与乳糖峰的比值没有明显差异,表明气溶胶制剂中药物和乳糖含量均匀。相比之下,混悬液喷雾干燥的制剂显示出随着颗粒从 NGI 的 1 级到 7 级收集,药物含量增加而乳糖含量减少,表明药物-赋形剂分布的比例不均匀。O-PTIR 的定性化学成分与各种粒径级分的常规湿法分析相当,表明 O-PTIR 适合作为一种有价值的分析平台,用于筛选固态 DPI 的物理化学性质。

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