Cheng Wen-Ting, Lin Shan-Yang
Department of Medical Research & Education, Taipei Veterans General Hospital, Shih-Pai, Taipei, Taiwan, ROC.
Int J Pharm. 2008 Jun 5;357(1-2):164-8. doi: 10.1016/j.ijpharm.2008.01.048. Epub 2008 Feb 3.
The effect of environmental humidity and additional water added on the polymorphic change of famotidine in the process of grinding was investigated. The famotidine form B powder with or without additional amount of water added was respectively ground for 30 min in an oscillatory ball mill under 25+/-2 degrees C and three relative humidities (RH) (50+/-5%, 75+/-5% or 95+/-5% RH). Each ground sample was periodically isolated for analytical determinations by using differential scanning calorimetry (DSC), thermogravimetric (TG) analysis and Fourier transform infrared (FT-IR) microspectroscopy. The results indicate that the higher environmental humidity might induce and promote the polymorphic transformation of famotidine from form B to form A in the process of grinding. Moreover, the more the amount of water externally added the easier the polymorphic transformation of famotidine from form B to form A obtained. In addition, the more grinding time spent the more formation of form A obtained. This study disavowed the results of other studies in which no polymorphic change of famotidine even by grinding. The apparent evidence shows that the solid-state polymorphic transformation of famotidine from form B to form A in the grinding process significantly depended on the relative humidity of atmosphere and the additional amount of water added.
研究了环境湿度和添加额外水分对法莫替丁研磨过程中多晶型变化的影响。分别在25±2℃和三种相对湿度(RH)(50±5%、75±5%或95±5%RH)条件下,将添加或未添加额外水分的法莫替丁B型粉末在振荡球磨机中研磨30分钟。通过差示扫描量热法(DSC)、热重分析法(TG)和傅里叶变换红外(FT-IR)显微光谱法定期分离每个研磨样品进行分析测定。结果表明,较高的环境湿度可能在研磨过程中诱导并促进法莫替丁从B型向A型的多晶型转变。此外,外部添加的水分越多,越容易得到法莫替丁从B型向A型的多晶型转变。另外,研磨时间越长,得到的A型越多。本研究否定了其他研究中即使研磨法莫替丁也没有多晶型变化的结果。明显的证据表明,法莫替丁在研磨过程中从B型向A型的固态多晶型转变显著取决于大气的相对湿度和添加的额外水量。