Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmacy and Pharmaceutical Sciences, Petra University, Jordan.
Mar Drugs. 2010 May 25;8(5):1699-715. doi: 10.3390/md8051699.
The performance of the novel chitin metal silicate (CMS) co-precipitates as a single multifunctional excipient in tablet formulation using direct compression and wet granulation methods is evaluated. The neutral, acidic, and basic drugs Spironolactone (SPL), ibuprofen (IBU) and metronidazole (MET), respectively, were used as model drugs. Commercial Aldactone, Fleximex and Dumazole tablets containing SPL, IBU and MET, respectively, and tablets made using Avicel 200, were used in the study for comparison purposes. Tablets of acceptable crushing strength (>40 N) were obtained using CMS. The friability values for all tablets were well below the maximum 1% USP tolerance limit. CMS produced superdisintegrating tablets (disintegration time < 1 min) with the three model drugs. Regarding the dissolution rate, the sequence was as follow: CMS > Fleximex > Avicel 200, CMS > Avicel 200 > Dumazole and Aldactone > Avicel 200 > CMS for IBU, MET and SPL, respectively. Compressional properties of formulations were analyzed using density measurements and the compression Kawakita equation as assessment parameters. On the basis of DSC results, CMS co precipitates were found to be compatible with the tested drugs. Conclusively, the CMS co-precipitates have the potential to be used as filler, binder, and superdisintegrant, all-in-one, in the design of tablets by the direct compression as well as wet granulation methods.
评价了新型壳聚糖金属硅酸盐(CMS)共沉淀物作为单一多功能赋形剂在片剂制剂中直接压缩和湿法制粒方法中的性能。分别使用中性、酸性和碱性药物螺内酯(SPL)、布洛芬(IBU)和甲硝唑(MET)作为模型药物。使用含有 SPL、IBU 和 MET 的商业 Aldactone、Fleximex 和 Dumazole 片剂以及使用 Avicel 200 制成的片剂进行研究,以进行比较。使用 CMS 可获得可接受的抗压强度(>40 N)的片剂。所有片剂的易碎值均远低于 USP 最大 1%的容限。CMS 与三种模型药物均产生超崩解片剂(崩解时间<1 分钟)。关于溶出速率,顺序如下:CMS > Fleximex > Avicel 200、CMS > Avicel 200 > Dumazole 和 Aldactone > Avicel 200 > CMS,分别用于 IBU、MET 和 SPL。使用密度测量和压缩 Kawakita 方程作为评估参数分析制剂的压缩性能。根据 DSC 结果,CMS 共沉淀物与测试药物相容。总之,CMS 共沉淀物有可能在直接压缩和湿法制粒方法中作为填充剂、粘合剂和超崩解剂,一次性用于片剂的设计。