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硬脂酸钠对吸湿性喷雾干燥粉末水致劣化的保护作用。

Protective effect of sodium stearate on the moisture-induced deterioration of hygroscopic spray-dried powders.

机构信息

Advanced Drug Delivery Group, Faculty of Pharmacy, The University of Sydney, New South Wales 2006, Australia.

Future Industries Institute, University of South Australia, 5095, Australia.

出版信息

Int J Pharm. 2018 Apr 25;541(1-2):11-18. doi: 10.1016/j.ijpharm.2018.02.018. Epub 2018 Feb 15.

Abstract

Amorphous powders are thermodynamically unstable, significantly impacting the processing, storage and performance of a product. Therefore, stabilization of the amorphous contents is in demand. In this study, disodium cromoglycate (DSCG) powder was chosen as a model drug because it is amorphous and highly hygroscopic after spray drying. Sodium stearate (NaSt) was co-spray dried with DSCG at various concentrations (10, 50 and 90% w/w) to investigate its effect against moisture-induced deterioration on the in vitro aerosolization performance of DSCG. Particle size distribution and morphology were measured by laser diffraction and scanning electron microscopy (SEM). Physicochemical properties of the powders were analysed by X-ray powder diffraction (XRPD) and dynamic vapour sorption (DVS). Particle surface chemistry was analysed by the time-of-flight secondary ion mass spectrometry (ToF-SIMS). In vitro dissolution behaviours of the spray-dried (SD) powders were tested by the Franz cell apparatus. In vitro aerosolization performance of SD formulations stored at different relative humidity (RH) was evaluated by a multi-stage liquid impinger (MSLI), using an Osmohaler® at 100 L/min. Results showed that adding NaSt in the formulation not only increased the aerosolization performance of DSCG significantly, but also effectively reduced the deleterious impact of moisture. No significant difference was found in the fine particle fraction (FPF) of formulations containing NaSt before and after storage at both 60% and 75% RH for one week. However, after one month storage at 75% RH, SD formulation containing 10% NaSt showed a reduction in FPF, while formulations containing 50% or 90% NaSt showed no change. The underlying mechanism was that NaSt increased the crystallinity of the powders and its presence on the particle surface reduced particle aggregations and cohesiveness. However, NaSt at high concentration could reduce dissolution rate, which needs to be taken into consideration.

摘要

无定形粉末在热力学上是不稳定的,会显著影响产品的加工、储存和性能。因此,需要稳定无定形含量。在这项研究中,选择二钠色甘酸钠(DSCG)粉末作为模型药物,因为它在喷雾干燥后是无定形的,且吸湿性很高。将硬脂酸钠(NaSt)与 DSCG 以不同浓度(10、50 和 90%w/w)共喷雾干燥,以研究其对喷雾干燥 DSCG 体外空气动力学性能因水分引起的劣化的影响。通过激光衍射和扫描电子显微镜(SEM)测量颗粒尺寸分布和形态。通过 X 射线粉末衍射(XRPD)和动态蒸气吸附(DVS)分析粉末的物理化学性质。通过飞行时间二次离子质谱(ToF-SIMS)分析颗粒表面化学。通过 Franz 细胞仪测试喷雾干燥(SD)粉末的体外溶解行为。通过多阶段液体撞击器(MSLI),使用 Osmohaler®以 100 L/min 的流速,评估在不同相对湿度(RH)下储存的 SD 制剂的体外空气动力学性能。结果表明,在配方中添加 NaSt 不仅可以显著提高 DSCG 的空气动力学性能,还可以有效降低水分的有害影响。在 60%和 75% RH 下储存一周前后,含有 NaSt 的制剂的细颗粒分数(FPF)没有明显差异。然而,在 75% RH 下储存一个月后,含有 10%NaSt 的 SD 制剂的 FPF 降低,而含有 50%或 90%NaSt 的制剂没有变化。潜在机制是 NaSt 增加了粉末的结晶度,其存在于颗粒表面减少了颗粒聚集和粘性。然而,高浓度的 NaSt 可能会降低溶解速率,这需要加以考虑。

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