Evaluating the effect of glidants on tablet sticking propensity of ketoprofen using powder rheology

材料科学 气相二氧化硅 压片 流变学 粘着系数 复合材料 粘着概率 化学工程 化学 有机化学 工程类 吸附 解吸
作者
Bhavin V. Parekh,Joseph S. Saddik,Dipal Patel,Rutesh H. Dave
出处
期刊:International Journal of Pharmaceutics [Elsevier BV]
卷期号:635: 122710-122710 被引量:4
标识
DOI:10.1016/j.ijpharm.2023.122710
摘要

Punch sticking has been a leading drawback that has challenged successful tablet manufacturing since its initial conception. Due to the capricious nature of the complication, this can arise during any phase of the development process. Even now, identifying such a problem is a prerequisite during the initial stage of development. The present study evaluated the role of Aerosil®200, talc, and Syloid®244 as glidants in varying amounts ranging from 0.0 percent to 2.0 percent w/w on tablets sticking relatively to five different metal surfaces, with ketoprofen as the model drug. Powder rheology is a predictable technique used to calculate the sticking index. The sticking index of each formulation in comparison to each metal coupon was identified by calculating the kinematic angle of internal friction and the angle of wall friction using the shear cell test and wall friction test, respectively. Interestingly, glidants were found to reduce the sticking propensity of the powder blend in a concentration-dependent manner. In addition, the compression study validated the expected sticking tendency ranking order. According to the research data, the sticking index could effectively be utilized to envisage the possibility of tablet sticking, i.e., by selecting the formulation's excipient and their percentages or selecting appropriate punched metal surfaces in the tableting process.
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