Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, Wenhua Road 103, Shenyang 110016, People's Republic of China.
School of Functional Food and Wine, Shenyang Pharmaceutical University, Wenhua Road 103, Shenyang 110016, People's Republic of China.
Int J Pharm. 2022 Aug 25;624:121986. doi: 10.1016/j.ijpharm.2022.121986. Epub 2022 Jul 9.
The aim of this study was to investigate the correlation between critical granules characters (including particle size, surface roughness, and apparent porosity) and mechanical properties of press-coated tablets. Granules of a model formulation were prepared through Roll Compaction Granulation (RCG), High Shear Granulation (HSG), and Fluidized Bed Granulation (FBG) to prepare granules with different surface roughness and apparent porosity. The surface roughness and porosity of granules had a significantly greater effect on mechanical properties than the particle size of granules. Whether for brittle or plastic materials, FBG granules with the roughest surface and the greatest apparent porosity exhibited the best compression properties. The elastic recovery test, the interlayer adhesion forces study, the break pattern test, and the X-ray microcomputed tomography investigation suggested that granules with great apparent porosity and rough surfaces could contribute to the production of stable press-coated structures. Moreover, for press-coated tablets prepared using granules, the proper granules in the coat layer could eliminate the side effect of the rigid core on the mechanical strength. The above understandings will be conducive to the selection of compatible and appropriate granules characters, which can enhance mechanical properties and extend the application of press-coated tablets.
本研究旨在探讨关键颗粒特性(包括粒径、表面粗糙度和表观孔隙率)与压制涂层片剂机械性能之间的相关性。通过滚压造粒(RCG)、高剪切造粒(HSG)和流化床造粒(FBG)制备模型制剂的颗粒,以制备具有不同表面粗糙度和表观孔隙率的颗粒。颗粒的表面粗糙度和孔隙率对机械性能的影响明显大于颗粒的粒径。对于脆性或塑性材料,具有最粗糙表面和最大表观孔隙率的 FBG 颗粒表现出最佳的压缩性能。弹性回复试验、层间附着力研究、断裂模式试验和 X 射线微计算机断层扫描研究表明,具有大表观孔隙率和粗糙表面的颗粒有助于生产稳定的压制涂层结构。此外,对于使用颗粒制备的压制涂层片剂,适当的涂层层中的颗粒可以消除刚性芯对机械强度的副作用。上述认识将有助于选择相容且合适的颗粒特性,从而增强机械性能并扩展压制涂层片剂的应用。