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用于呼吸道药物输送的大孔颗粒。基于甘氨酸的配方。

Large porous particles for respiratory drug delivery. Glycine-based formulations.

机构信息

Nikolaev Institute of Inorganic Chemistry SB RAS, Novosibirsk, Russia; Novosibirsk State University, Novosibirsk, Russia.

Novosibirsk State University, Novosibirsk, Russia.

出版信息

Eur J Pharm Sci. 2017 Dec 15;110:148-156. doi: 10.1016/j.ejps.2017.05.007. Epub 2017 May 4.

Abstract

Large porous particles are becoming increasingly popular as carriers for pulmonary drug delivery with both local and systemic applications. These particles have high geometric diameters (5-30μm) but low bulk density (~0.1g/cm or less) such that the aerodynamic diameter remains low (1-5μm). In this study salbutamol and budesonide serve as model inhalable drugs with poor water solubility. A novel method is proposed for the production of dry powder inhaler formulations with enhanced aerosol performance (e.g. for salbutamol-glycine formulation the fine particle fraction (FPF≤4.7μm) value is 67.0±1.3%) from substances that are poorly soluble in water. To overcome the problems related to extremely poor aqueous solubility of the APIs, not individual solvents are used for spray freeze-drying of API solutions, but organic-water mixtures, which can form clathrate hydrates at low temperatures and release APIs or their complexes as fine powders, which form large porous particles after the clathrates are removed by sublimation. Zwitterionic glycine has been used as an additive to API directly in solutions prior to spray freeze-drying, in order to prevent aggregation of powders, to enhance their dispersibility and improve air-flow properties. The clathrate-forming spray freeze-drying process in the multi-component system was optimized using low-temperature powder X-ray diffraction and thermal analysis.

摘要

大孔颗粒作为肺部药物输送的载体,具有局部和全身应用的双重优势,越来越受到关注。这些颗粒具有较大的几何直径(5-30μm),但堆积密度低(~0.1g/cm³或更低),从而保持较低的空气动力学直径(1-5μm)。在这项研究中,沙丁胺醇和布地奈德作为模型吸入药物,水溶性较差。提出了一种新的方法,用于生产干粉吸入剂配方,以提高气溶胶性能(例如,对于沙丁胺醇-甘氨酸配方,细颗粒分数(FPF≤4.7μm)值为 67.0±1.3%),所用物质在水中的溶解度较差。为了克服 API 极水溶性差相关的问题,不是使用单独的溶剂进行 API 溶液的喷雾冷冻干燥,而是使用有机-水混合物,其可以在低温下形成包合物水合物,并在包合物通过升华去除后释放 API 或其复合物作为细粉,形成大孔颗粒。两性离子甘氨酸已被用作 API 的添加剂,直接添加到喷雾冷冻干燥溶液中,以防止粉末聚集,增强其分散性并改善空气流动特性。使用低温粉末 X 射线衍射和热分析对多组分系统中的包合形成喷雾冷冻干燥过程进行了优化。

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