首页> 外文期刊>International Journal of Pharmaceutics >Predicting the physical state of spray dried composites: salbutamol sulphate/lactose and salbutamol sulphate/polyethylene glycol co-spray dried systems.
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Predicting the physical state of spray dried composites: salbutamol sulphate/lactose and salbutamol sulphate/polyethylene glycol co-spray dried systems.

机译:预测喷雾干燥复合材料的物理状态:硫酸沙丁胺醇/乳糖和硫酸沙丁胺醇/聚乙二醇共喷雾干燥系统。

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摘要

The effect of spray drying salbutamol sulphate, salbutamol sulphate/lactose and salbutamol sulphate/polyethylene glycol (PEG) solutions was investigated. Co-spray drying salbutamol sulphate with lactose, which is amorphous when spray dried alone, resulted in amorphous composites. Co-spray drying salbutamol sulphate with PEG 4000 and PEG 20,000, which do not form amorphous systems when spray dried alone, resulted in systems of varying crystallinity, the crystallinity depending on the weight ratio of polymer to drug. Examination of the physical properties of these salbutamol sulphate co-spray dried systems and those of bendroflumethiazide/PEG and lactose/PEG composites suggested that the formation and physical stability of amorphous composites prepared by spray drying is dependent on whether the glass transition temperature, Tg, of one of the two components is high enough to result in a Tg of the composite sufficiently high that the Kauzmann temperature of the mix is greater than the temperature of storage. The modified Gordon-Taylor equation proved to be useful in predicting the likelihood that a two-component composite will be amorphous on spray drying. Furthermore, the Gordon-Taylor equation was also useful in predicting the likely physical stability of amorphous two component composites and predicted that even polymers with apparently low Tgs, such as PEGs, may be stabilised in an amorphous composite by a suitable additive having a sufficiently high Tg.
机译:研究了喷雾干燥硫酸沙丁胺醇,硫酸沙丁胺醇/乳糖和硫酸沙丁胺醇/聚乙二醇(PEG)溶液的效果。与乳糖共同喷雾干燥硫酸沙丁胺醇与乳糖(单独喷雾干燥时为无定形),形成无定形复合材料。与PEG 4000和PEG 20,000共同喷雾干燥的硫酸沙丁胺醇硫酸盐,单独喷雾干燥时不会形成无定形体系,导致结晶度变化,结晶度取决于聚合物与药物的重量比。对这些硫酸沙丁胺醇共喷雾干燥系统以及苯达氟甲酰肼/ PEG和乳糖/ PEG复合材料的物理性能的研究表明,通过喷雾干燥制备的无定形复合材料的形成和物理稳定性取决于玻璃化转变温度Tg,这两种成分之一的“高”值足以导致复合材料的Tg足够高,以至于混合物的考兹曼温度高于储存温度。事实证明,修改后的Gordon-Taylor方程可用于预测两组分复合材料在喷雾干燥后为非晶态的可能性。此外,Gordon-Taylor方程还可以用于预测非晶态两组分复合材料的可能的物理稳定性,并预测即使是Tgs很低的聚合物,例如PEG,也可以通过具有足够高的合适添加剂而稳定在非晶态复合材料中。 g

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