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储存相对湿度对吸湿型硫酸卡那霉素与疏水性药物利福平共喷雾干燥粉末气溶胶化的影响。

The influence of storage relative humidity on aerosolization of co-spray dried powders of hygroscopic kanamycin with the hydrophobic drug rifampicin.

机构信息

a School of Pharmacy , University of Otago , Dunedin , New Zealand.

出版信息

Drug Dev Ind Pharm. 2019 Jul;45(7):1205-1213. doi: 10.1080/03639045.2019.1607869. Epub 2019 May 6.

Abstract

The purpose of this study was to investigate the influence of storage humidity on aerosolization and physicochemical properties of co-spray dried powders of kanamycin with rifampicin. The powders were stored for one-month in an open Petri dish at different relative humidities (RHs) (15%, 43%, and 75%) and 25 ± 2 °C. The aerosolization (fine particle fraction, FPF) of the powders was determined by a next generation impactor (NGI). The moisture content, particle morphology and crystallinity of the powders were determined by Karl Fischer titration, scanning electron microscopy, and X-ray powder diffractometry, respectively. At all RH, the FPF of hydrophobic rifampicin-only powder was unaffected but the FPF of hygroscopic kanamycin-only powder significantly decreased even at 43% RH. The kanamycin-only particles fused together, crystallized and formed hard cakes at 75% RH. The aerosolization of kanamycin and rifampicin in the combination powders remained unaffected at 15% and 43% RH, but aerosolization significantly decreased at 75% RH. Enrichment of the surface of the particles with hydrophobic rifampicin did not protect the combination powders from moisture uptake but it prevented particle agglomeration up to 43% RH. At 75% RH, the moisture uptake led to agglomeration of the particles of the combination powder particles and consequently an increase in aerodynamic diameter. Further studies are required to investigate how rifampicin enrichment prevents particle agglomeration, the possible mechanisms (e.g. particle interactions due to capillary forces or electrostatic forces) for the changes in the aerosolization and changes in surface composition during storage.

摘要

本研究旨在探讨储存湿度对卡那霉素和利福平共喷雾干燥粉末气溶胶化及理化性质的影响。将粉末在不同相对湿度(RH)(15%、43%和 75%)和 25±2℃的开放培养皿中储存一个月。通过下一代撞击器(NGI)测定粉末的气溶胶化(细颗粒分数,FPF)。通过卡尔费休滴定、扫描电子显微镜和 X 射线粉末衍射分别测定粉末的水分含量、颗粒形态和结晶度。在所有 RH 下,疏水性利福平单独粉末的 FPF 不受影响,但亲水性卡那霉素单独粉末的 FPF 在 43% RH 时显著下降。在 75% RH 下,卡那霉素颗粒融合、结晶并形成硬饼。在 15%和 43% RH 下,卡那霉素和利福平在组合粉末中的气溶胶化不受影响,但在 75% RH 下显著下降。疏水性利福平在颗粒表面的富集并不能保护组合粉末免受水分吸收,但可以防止颗粒在 43% RH 以下团聚。在 75% RH 下,水分吸收导致组合粉末颗粒团聚,从而增加空气动力学直径。需要进一步研究利福平富集如何防止颗粒团聚,以及气溶胶化变化和储存过程中表面成分变化的可能机制(例如由于毛细作用力或静电力引起的颗粒相互作用)。

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