Hsieh Yi-Ling, Box Karl, Taylor Lynne S
Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907.
Sirius Analytical, Forest Row, East Sussex, UK.
J Pharm Sci. 2014 Sep;103(9):2724-2735. doi: 10.1002/jps.23890. Epub 2014 Feb 6.
The aim of this study was to investigate the pH-induced precipitation behavior of four ionizable compounds (papaverine, dipyridamole, glyburide, and warfarin) in the absence and presence of polymers. Polymers selected included nonionic, anionic, and cationic polymers. Precipitates were analyzed immediately after formation using high-energy radiation wide-angle X-ray scattering analysis and polarized light microscopy. Papaverine immediately crystallized to the original solid-state form upon creation of a highly supersaturated solution and polymers were unable to prevent crystallization. Dipyridamole also crystallized rapidly, forming a metastable polymorph that was stabilized by several of the cellulosic polymers. For glyburide and warfarin, although the compounds readily crystallized in the absence of the polymers, several of the polymers were able to prevent crystallization for more than 6 h. In general, measurements of solution concentration immediately following precipitation corroborated the solid-state analysis results, with the solution phase for the noncrystalline precipitates having a concentration considerably higher than that of the equilibrium solubility value, whereas for the crystalline precipitates, values were closer to the equilibrium solubility. Thus, precipitation to a noncrystalline solid was found to be promoted by the presence of some polymers, resulting in the formation of a supersaturated solution.
本研究的目的是研究四种可电离化合物(罂粟碱、双嘧达莫、格列本脲和华法林)在不存在和存在聚合物的情况下,pH诱导的沉淀行为。所选聚合物包括非离子型、阴离子型和阳离子型聚合物。沉淀形成后立即使用高能辐射广角X射线散射分析和偏光显微镜对沉淀物进行分析。形成高度过饱和溶液后,罂粟碱立即结晶为原始固态形式,聚合物无法阻止结晶。双嘧达莫也迅速结晶,形成一种亚稳多晶型物,该多晶型物被几种纤维素聚合物稳定。对于格列本脲和华法林,尽管这些化合物在不存在聚合物的情况下很容易结晶,但几种聚合物能够防止结晶超过6小时。一般来说,沉淀后立即测量溶液浓度证实了固态分析结果,非晶态沉淀物的溶液相浓度远高于平衡溶解度值,而结晶沉淀物的值更接近平衡溶解度。因此,发现某些聚合物的存在促进了向非晶态固体的沉淀,导致形成过饱和溶液。