Okada Nobuto, Hayashi Yoshihiro, Onuki Yoshinori, Miura Takahiro, Obata Yasuko, Takayama Kozo
Department of Pharmaceutics, Hoshi University.
Chem Pharm Bull (Tokyo). 2016;64(8):1142-8. doi: 10.1248/cpb.c16-00177.
Scored tablets can be divided into equal halves for individual treatment of patients. However, the relationships between scored shapes and tablet characteristics such as the dividing strength, halving equality, and breaking strength are poorly understood. The purpose of this study was to simulate the mechanical stress distribution of scored tablets by using the finite element method (FEM). A runnel of triangle pole on the top surface of flat tablets was fabricated as the score shape. The depth and angle of the scores were selected as design variables. Elastic parameters such as a Young's modulus and a Poisson ratio for the model powder bed were measured. FEM simulation was then applied to the scored tablets, represented as a continuum elastic model. Stress distributions in the inner structure of the tablets were simulated after applying external force. The adequacy of the simulation was evaluated in experiments using scored tablets. As a result, we observed a relatively good agreement between the FEM simulation and the experiments, suggesting that FEM simulation is advantageous for designing scored tablets.
刻痕片可分成相等的两半用于患者的个体化治疗。然而,人们对刻痕形状与片剂特性(如分割强度、对半均分性和断裂强度)之间的关系了解甚少。本研究的目的是使用有限元法(FEM)模拟刻痕片的机械应力分布。在扁平片剂的顶表面制作三角形棱柱状的凹槽作为刻痕形状。将刻痕的深度和角度选为设计变量。测量了模型粉末床的弹性参数,如杨氏模量和泊松比。然后将有限元模拟应用于表示为连续弹性模型的刻痕片。施加外力后模拟片剂内部结构中的应力分布。使用刻痕片的实验评估了模拟的充分性。结果,我们观察到有限元模拟与实验之间有较好的一致性,这表明有限元模拟在设计刻痕片方面具有优势。