Qu Li, Stewart Peter J, Hapgood Karen P, Lakio Satu, Morton David A V, Zhou Qi Tony
Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Victoria 3055, Australia.
Department of Chemical Engineering, Monash University, Clayton, Victoria 3800, Australia.
J Pharm Sci. 2017 Jan;106(1):159-167. doi: 10.1016/j.xphs.2016.07.017. Epub 2016 Sep 21.
This study aims at testing the feasibility of a single-step coating process to produce a powder formulation of active and inactive ingredients for direct compression. A cohesive ibuprofen powder was coprocessed with a coating material, a binder (polyvinylpyrrolidone K25), and a superdisintegrant (crospovidone). Magnesium stearate (MgSt), l-leucine, and silica were selected as coating materials (1% w/w). A coprocessed powder without any coating material was employed as a control. Coating with MgSt, l-leucine, or silica produced significantly improved powder flow in comparison to the control batch. Robust tablets were produced from the processed powders for each coating material. The tablets compacted using the coated powders with MgSt or l-leucine also exhibited significantly lower tablet ejection forces than the control batch, demonstrating their lubrication effect. Furthermore, the disintegration time and dissolution rates of these tablets made of the formulations coprocessed with lubricants were enhanced, even for those coated with the hydrophobic material such as MgSt that has been previously reported to inhibit dissolution. However, the tablets made with silica-coated powders would not disintegrate. This study indicated the feasibility of a single-step dry coating process to produce powders with both flow-aid and lubrication effects, which are suitable for direct compression.
本研究旨在测试一步包衣工艺生产用于直接压片的活性和非活性成分粉末制剂的可行性。将具有粘性的布洛芬粉末与包衣材料、粘合剂(聚乙烯吡咯烷酮K25)和超级崩解剂(交联聚维酮)共同加工。选择硬脂酸镁(MgSt)、L-亮氨酸和二氧化硅作为包衣材料(1%w/w)。将未添加任何包衣材料的共同加工粉末用作对照。与对照批次相比,用MgSt、L-亮氨酸或二氧化硅包衣可显著改善粉末流动性。由每种包衣材料的加工粉末制得坚固的片剂。使用含MgSt或L-亮氨酸的包衣粉末压制的片剂的片剂推出力也明显低于对照批次,表明了它们的润滑效果。此外,由与润滑剂共同加工的制剂制成的这些片剂的崩解时间和溶解速率有所提高,即使是那些用先前报道会抑制溶解的疏水性材料(如MgSt)包衣的片剂也是如此。然而,用二氧化硅包衣的粉末制成的片剂不会崩解。本研究表明一步干包衣工艺生产具有助流和润滑效果、适合直接压片的粉末的可行性。