Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, 575 Stadium Mall Drive, West Lafayette, Indiana 47907-2091; Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang, Liaoning, China.
Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, 575 Stadium Mall Drive, West Lafayette, Indiana 47907-2091.
J Pharm Sci. 2017 Oct;106(10):3022-3032. doi: 10.1016/j.xphs.2017.05.020. Epub 2017 May 24.
This study has investigated the surface coating efficiency and powder flow improvement of a model cohesive acetaminophen powder by high-shear processing with pharmaceutical lubricants through 2 common equipment, conical comil and high-shear mixer. Effects of coating materials and processing parameters on powder flow and surface coating coverage were evaluated. Both Carr's index and shear cell data indicated that processing with the lubricants using comil or high-shear mixer substantially improved the flow of the cohesive acetaminophen powder. Flow improvement was most pronounced for those processed with 1% wt/wt magnesium stearate, from "cohesive" for the V-blended sample to "easy flowing" for the optimally coated sample. Qualitative and quantitative characterizations demonstrated a greater degree of surface coverage for high-shear mixing compared with comilling; nevertheless, flow properties of the samples at the corresponding optimized conditions were comparable between 2 techniques. Scanning electron microscopy images demonstrated different coating mechanisms with magnesium stearate or l-leucine (magnesium stearate forms a coating layer and leucine coating increases surface roughness). Furthermore, surface coating with hydrophobic magnesium stearate did not retard the dissolution kinetics of acetaminophen. Future studies are warranted to evaluate tableting behavior of such dry-coated pharmaceutical powders.
本研究通过高剪切工艺,使用药用润滑剂处理模型亲水性扑热息痛粉末,考察了其表面涂层效率和粉末流动性的改善。评估了涂层材料和加工参数对粉末流动性和表面涂层覆盖率的影响。Carr 指数和剪切室数据均表明,使用康米尔或高剪切混合机处理润滑剂可显著改善亲水性扑热息痛粉末的流动性。对于用 1wt%wt 硬脂酸镁处理的粉末,流动性改善最为显著,从 V 型混合样品的“粘性”变为最佳涂层样品的“易流动”。定性和定量表征表明,与康米尔相比,高剪切混合具有更高的表面覆盖程度;然而,在相应的优化条件下,两种技术的样品流动性能相当。扫描电子显微镜图像表明,硬脂酸镁或 L-亮氨酸(硬脂酸镁形成涂层,亮氨酸涂层增加表面粗糙度)的涂层机制不同。此外,疏水性硬脂酸镁的表面涂层不会延迟扑热息痛的溶解动力学。未来的研究有必要评估此类干涂层药物粉末的压片行为。