Division of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, Khon Kaen University, Khon Kaen 40002, Thailand.
Pharmaceutical Materials Science and Engineering Laboratory, Department of Pharmaceutics, College of Pharmacy, University of Minnesota, Minneapolis, MN 55455, USA.
Int J Pharm. 2024 Aug 15;661:124454. doi: 10.1016/j.ijpharm.2024.124454. Epub 2024 Jul 8.
Powder flow is one of the crucial factors affecting several pharmaceutical manufacturing processes. Problems due to insufficient powder flow reduce production process efficiency and cause suboptimum product quality. The U.S. Pharmacopoeia has specified four methods to evaluate the flowability of pharmaceutical powders, including angle of repose (AoR), compressibility index (CI) and Hausner ratio (HR), Flow through an orifice, and shear cell. Comparison within and between those methods with 21 powders (covering a wide range of flowability) was performed in this study. Strong correlation was observed between fixed base cone AoR, and fixed height cone AoR (R = 0.939). CI and HR values calculated from a tapped density tester (meeting USP standards), manual tapping, and Geopyc® correlated strongly (R > 0.9). AoR, CI/HR, minimum diameter for flowing through an orifice (d), and shear cell results generally correlate strongly for materials with flowability worse than Avicel® PH102. Both shear cell and CI/HR methods can reliably distinguish powders exhibiting poor flow. For materials with good flow, the ability to distinguish powders follows the order of AoR ≈ CI/HR > shear cell > d. The systematic comparison of the four common methods provides useful information to guide the selection of methods for future powder flow characterization. Given the limitations observed in all four methods, we recommend that multiple techniques should be used, when possible, to more holistically characterize the flowability of a wide range of powders.
粉末流动是影响许多制药工艺的关键因素之一。由于粉末流动性不足而导致的问题会降低生产过程效率,并导致产品质量不理想。美国药典规定了四种评估药物粉末流动性的方法,包括休止角(AoR)、可压缩性指数(CI)和豪斯纳比(HR)、通过孔径流动和剪切室。本研究对 21 种(涵盖广泛流动性范围)粉末在这些方法之间和内部进行了比较。固定基角 AoR 和固定高度角 AoR 之间存在很强的相关性(R=0.939)。从符合 USP 标准的振实密度测试仪、手动敲击和 Geopyc® 计算得出的 CI 和 HR 值相关性很强(R>0.9)。对于流动性差于 Avicel® PH102 的材料,AoR、CI/HR、通过孔径流动的最小直径(d)和剪切室结果通常具有很强的相关性。剪切室和 CI/HR 方法都可以可靠地区分流动性差的粉末。对于流动性好的材料,区分粉末的能力顺序为 AoR≈CI/HR>剪切室>d。这四种常用方法的系统比较为指导未来粉末流动特性的方法选择提供了有用的信息。鉴于所有四种方法都存在局限性,我们建议尽可能使用多种技术,更全面地表征广泛的粉末的流动性。