Pharmaceutical Research and Development, Small Molecule Process and Product Development, Amgen Inc., One Amgen Center Drive, Thousand Oaks, CA 91320, USA.
Int J Pharm. 2013 Jan 30;441(1-2):356-64. doi: 10.1016/j.ijpharm.2012.11.020. Epub 2012 Nov 23.
A 96-well high-throughput cocrystal screening workflow has been developed consisting of solvent-mediated sonic blending synthesis and on-plate solid/solution stability characterization by XRPD. A strategy of cocrystallization screening in selected blend solvents including water mixtures is proposed to not only manipulate solubility of the cocrystal components but also differentiate physical stability of the cocrystal products. Caffeine-oxalic acid and theophylline-oxalic acid cocrystals were prepared and evaluated in relation to saturation levels of the cocrystal components and stability of the cocrystal products in anhydrous and hydrous solvents. AMG 517 was screened with a number of coformers, and solid/solution stability of the resulting cocrystals on the 96-well plate was investigated. A stability trend was observed and confirmed that cocrystals comprised of lower aqueous solubility coformers tended to be more stable in water. Furthermore, cocrystals which could be isolated under hydrous solvent blending condition exhibited superior physical stability to those which could only be obtained under anhydrous condition. This integrated HTS workflow provides an efficient route in an API-sparing approach to screen and identify cocrystal candidates with proper solubility and solid/solution stability properties.
已开发出一种 96 孔高通量共晶筛选工作流程,包括溶剂介导的超声混合合成和通过 XRPD 进行板上固/液稳定性表征。提出了一种在选定共晶混合溶剂中进行共晶筛选的策略,包括水混合物,不仅可以操纵共晶成分的溶解度,还可以区分共晶产物的物理稳定性。研究了咖啡因-草酸和茶碱-草酸共晶在共晶成分的饱和度以及无水和含水溶剂中共晶产物的稳定性方面的情况。用多种共晶形成剂对 AMG 517 进行了筛选,并在 96 孔板上研究了所得共晶的固/液稳定性。观察到稳定性趋势并得到证实,包含较低水溶解度共晶形成剂的共晶在水中往往更稳定。此外,在含水溶剂混合条件下可以分离出的共晶在物理稳定性方面优于只能在无水条件下获得的共晶。这种集成的高通量筛选工作流程提供了一种高效的方法,可在节约原料药的方法中筛选和鉴定具有适当溶解度和固/液稳定性的共晶候选物。