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盐/酸无定形复合体系的体积、表面性质和吸水机制。

Bulk, surface properties and water uptake mechanisms of salt/acid amorphous composite systems.

机构信息

School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, College Green, Dublin 2, Ireland.

出版信息

Int J Pharm. 2013 Nov 1;456(1):143-52. doi: 10.1016/j.ijpharm.2013.07.076. Epub 2013 Aug 12.

DOI:10.1016/j.ijpharm.2013.07.076
PMID:23948137
Abstract

Developing amorphous pharmaceuticals can be desirable due to advantageous biopharmaceutical properties. Low glass transition temperature (Tg) amorphous drugs can be protected from crystallisation by mixing with high Tg excipients, such as polymers, or with salt forms. However, both polymers and salts can enhance the water uptake. The aim of this study was to formulate physico-chemically stable amorphous materials, by co-processing different proportions of sulfathiazole and its sodium salt to produce an optimum ratio, characterised by the best physical stability and lowest hygroscopicity. Both sulfathiazole and salt amorphised upon spray drying. At room temperature, sulfathiazole crystallised within 1h at <5% relative humidity while the salt deliquesced when exposed to ambient humidity conditions. In the case of composite systems, FTIR spectroscopy, thermal and surface analysis suggested interactions with an acid:salt stoichiometry of 1:2. Increasing proportions of salt raised the Tg, enhancing the storage stability, however this was opposed by an enhanced hygroscopicity. The water uptake mechanism within the different amorphous systems, analysed by fitting the water sorption isotherms with the Young and Nelson equation, was dependent on the ratio employed, with the salt and the acid facilitating absorption and adsorption, respectively. Tuning the properties of amorphous salt/acid composites by optimising the ratio appears potentially promising to improve the physical stability of amorphous formulations.

摘要

由于有利的生物制药特性,开发无定形药物可能是可取的。低玻璃化转变温度(Tg)的无定形药物可以通过与高 Tg 赋形剂(如聚合物)或盐形式混合来防止结晶。然而,聚合物和盐都可以增加吸湿性。本研究的目的是通过共加工不同比例的磺胺噻唑及其钠盐来制备物理化学稳定的无定形材料,以产生最佳比例,其特征是具有最佳的物理稳定性和最低的吸湿性。磺胺噻唑和盐都在喷雾干燥时无定形化。在室温下,磺胺噻唑在 <5%相对湿度下 1 小时内结晶,而盐在暴露于环境湿度条件下潮解。在复合体系的情况下,傅里叶变换红外光谱、热分析和表面分析表明存在酸:盐化学计量比为 1:2 的相互作用。盐的比例增加会提高 Tg,增强储存稳定性,但这会被增强的吸湿性所抵消。通过用 Young 和 Nelson 方程拟合水分吸附等温线来分析不同无定形体系内的水分吸收机制,这取决于所采用的比例,盐和酸分别促进吸收和吸附。通过优化比例来调整无定形盐/酸复合材料的性能,似乎有希望改善无定形制剂的物理稳定性。

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