Division of Product Quality Research, Office of Pharmaceutical Quality, Center for Drug Evaluation and Research, U.S. Food and Drug Administration, Silver Spring, MD 20993, USA.
Division of Biology, Chemistry, and Materials Science, Office of Science and Engineering Laboratories, Center for Devices and Radiological Health, U.S. Food and Drug Administration, Silver Spring, MD 20993, USA.
Int J Pharm. 2018 Mar 1;538(1-2):215-222. doi: 10.1016/j.ijpharm.2018.01.012. Epub 2018 Jan 16.
Commonly used characterization techniques such as cryogenic-transmission electron microscopy (cryo-TEM) and batch-mode dynamic light scattering (DLS) are either time consuming or unable to offer high resolution to discern the poly-dispersity of complex drug products like cyclosporine ophthalmic emulsions. Here, a size-based separation and characterization method for globule size distribution using an asymmetric flow field flow fractionation (AF4) is reported for comparative assessment of cyclosporine ophthalmic emulsion drug products (model formulation) with a wide size span and poly-dispersity. Cyclosporine emulsion formulations that are qualitatively (Q1) and quantitatively (Q2) the same as Restasis® were prepared in house with varying manufacturing processes and analyzed using the optimized AF4 method. Based on our results, the commercially available cyclosporine ophthalmic emulsion has a globule size span from 30 nm to a few hundred nanometers with majority smaller than 100 nm. The results with in-house formulations demonstrated the sensitivity of AF4 in determining the differences in the globule size distribution caused by the changes to the manufacturing process. It is concluded that the optimized AF4 is a potential analytical technique for comprehensive understanding of the microstructure and assessment of complex emulsion drug products with high poly-dispersity.
常用的表征技术,如低温传输电子显微镜(cryo-TEM)和批量动态光散射(DLS),要么耗时,要么无法提供高分辨率来分辨环孢素眼用乳液等复杂药物制剂的多分散性。在这里,我们报道了一种基于粒径的分离和表征方法,用于使用不对称流场流分离(AF4)对粒径分布进行分析,以比较评估具有较宽粒径跨度和多分散性的环孢素眼用乳液药物制剂(模型制剂)。使用优化的 AF4 方法对具有不同制造工艺的环孢素乳剂制剂(Q1)和定量(Q2)与 Restasis®相同的制剂进行了分析。根据我们的结果,市售的环孢素眼用乳液的粒径跨度从 30nm 到几百纳米不等,大多数粒径小于 100nm。与内部制剂的结果表明,AF4 具有很高的灵敏度,可以确定由于制造工艺变化引起的粒径分布差异。结论是,优化的 AF4 是一种潜在的分析技术,可以全面了解具有高多分散性的复杂乳剂药物制剂的微观结构和评估。