Missaghi Shahrzad, Fassihi Reza
Temple University School of Pharmacy, 3307 North Broad Street, Philadelphia, PA 19140, USA.
AAPS PharmSciTech. 2004 Apr 5;5(2):e29. doi: 10.1208/pt050229.
The purpose of this study was to evaluate the nature of film formation on tablets with different compositions, using confocal laser scanning microscopy (CLSM), and to measure film adhesion via the application of a novel "magnet probe test." Three excipients, microcrystalline cellulose (MCC), spray-dried lactose monohydrate, and dibasic calcium phosphate dihydrate, were individually blended with 0.5% magnesium stearate, as a lubricant, and 2.5% tetracycline HCl, as a fluorescent marker, and were compressed using a Carver press. Tablets were coated with a solution consisting of 7% hydroxypropyl methylcellulose (HPMC) phthalate (HP-55), and 0.5% cetyl alcohol in acetone and isopropanol (11:9). The nature of polymer interaction with the tablets and coating was evaluated using CLSM and a designed magnet probe test. CLSM images clearly showed coating efficiency, thickness, and uniformity of film formation, and the extent of drug migration into the film at the coating interfaces of tablets. Among the excipients, MCC demonstrated the best interface for both film formation and uniformity in thickness relative to lactose monohydrate and dibasic calcium phosphate dihydrate. The detachment force of the coating layers from the tablet surfaces, as measured with the developed magnet probe test, was in the order of MCC>lactose monohydrate>dibasic calcium phosphate dihydrate. It was also shown that the designed magnet probe test provides reliable and reproducible results when used for measurement of film adhesion and bonding strength.
本研究的目的是使用共聚焦激光扫描显微镜(CLSM)评估不同组成片剂上的成膜性质,并通过应用一种新型“磁探针测试”来测量膜附着力。将三种辅料,微晶纤维素(MCC)、喷雾干燥的一水乳糖和二水磷酸氢钙,分别与0.5%的硬脂酸镁(作为润滑剂)和2.5%的盐酸四环素(作为荧光标记物)混合,并使用卡弗压力机压片。片剂用由7%的邻苯二甲酸羟丙基甲基纤维素(HPMC)(HP - 55)和0.5%的十六醇在丙酮和异丙醇(11:9)中的溶液包衣。使用CLSM和设计的磁探针测试评估聚合物与片剂和包衣的相互作用性质。CLSM图像清楚地显示了包衣效率、厚度和成膜均匀性,以及药物在片剂包衣界面处向膜内迁移的程度。在辅料中,相对于一水乳糖和二水磷酸氢钙,MCC在成膜和厚度均匀性方面都表现出最佳界面。用开发的磁探针测试测量的包衣层从片剂表面的剥离力顺序为MCC>一水乳糖>二水磷酸氢钙。还表明,设计的磁探针测试用于测量膜附着力和结合强度时能提供可靠且可重复的结果。