Eddleston Mark D, Thakuria Ranjit, Aldous Barry J, Jones William
Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, United Kingdom.
Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, United Kingdom.
J Pharm Sci. 2014 Sep;103(9):2859-2864. doi: 10.1002/jps.23865. Epub 2014 Jan 30.
The dissociation at high humidity of cocrystals formed between caffeine and theophylline with a series of dicarboxylic acids is investigated and found to be driven by the partial dissolution of the acid, rather than by the formation of caffeine/theophylline hydrate. It is shown that partial dissociation occurs under all humidity conditions, and that cocrystals of compounds which do not form hydrates also dissociate by this mechanism. The observations made in this study indicate that cocrystal instability at high humidity will be a widespread issue, especially for cocrystals where the two coformers have widely differing aqueous solubilities, as is likely for systems where cocrystallisation is being used as means of improving the aqueous solubility, or dissolution rate, of a compound.
研究了咖啡因与茶碱和一系列二元羧酸形成的共晶体在高湿度下的解离情况,发现其是由酸的部分溶解驱动的,而非咖啡因/茶碱水合物的形成。结果表明,在所有湿度条件下都会发生部分解离,且未形成水合物的化合物的共晶体也通过该机制解离。本研究中的观察结果表明,高湿度下共晶体的不稳定性将是一个普遍存在的问题,特别是对于两种共形成物在水中溶解度差异很大的共晶体,对于将共结晶用作提高化合物水溶性或溶解速率的系统来说可能就是这种情况。