Drug Product Science and Technology, Bristol-Myers Squibb Company, New Brunswick, New Jersey 08903, USA.
AAPS PharmSciTech. 2012 Dec;13(4):1190-6. doi: 10.1208/s12249-012-9846-8. Epub 2012 Sep 11.
Ambient air humidity and temperature are known to influence the mechanical strength of tablets. The objective of this work is to understand the influence of processing parameters and environmental conditions (humidity and temperature) on the strength of bilayer tablets. As part of this study, bilayer tablets were compressed with different layer ratios, dwell times, layer sequences, material properties (plastic and brittle), first and second layer forces, and lubricant concentrations. Compressed tablets were stored in stability chambers controlled at predetermined conditions (40C/45%RH, 40C/75%RH) for 1, 3, and 5 days. The axial strength of the stored tablets was measured and a statistical model was developed to determine the effects of the aforementioned factors on the strength of bilayer tablets. As part of this endeavor, a full 3 × 2(4) factorial design was executed. Responses of the experiments were analyzed using PROC GLM of SAS (SAS Institute Inc, Cary, North Carolina, USA). A model was fit using all the responses to determine the significant interactions (p < 0.05). Results of this study indicated that storage conditions and storage time have significant impact on the strength of bilayer tablets. For Avicel-lactose and lactose-Avicel tablets, tablet strength decreased with the increasing humidity and storage time. But for lactose-lactose tablets, due to the formation of solid bridges upon storage, an increase in tablet strength was observed. Significant interactions were observed between processing parameters and storage conditions on the strength of bilayer tablets.
环境空气湿度和温度已知会影响片剂的机械强度。本工作的目的是了解加工参数和环境条件(湿度和温度)对双层片剂强度的影响。作为这项研究的一部分,用不同的层比、停留时间、层顺序、材料特性(塑性和脆性)、第一层和第二层的力以及润滑剂浓度来压缩双层片剂。将压缩的片剂储存在控制在预定条件(40°C/45%RH、40°C/75%RH)下的稳定性室中 1、3 和 5 天。测量储存片剂的轴向强度,并建立统计模型以确定上述因素对双层片剂强度的影响。作为这项努力的一部分,执行了完整的 3×2(4)析因设计。使用 SAS(SAS Institute Inc,Cary,North Carolina,USA)中的 PROC GLM 分析实验的响应。使用所有响应拟合模型以确定显著相互作用(p<0.05)。这项研究的结果表明,储存条件和储存时间对双层片剂的强度有显著影响。对于微晶纤维素-乳糖和乳糖-微晶纤维素片剂,片剂强度随湿度和储存时间的增加而降低。但对于乳糖-乳糖片剂,由于储存时形成了固体桥,片剂强度增加。在双层片剂的强度方面,观察到处理参数和储存条件之间存在显著的相互作用。