Department of Pharmacy Practice and Science, School of Pharmaceutical Sciences, University of Shizuoka.
Pharmaceutical Research Lab., Kissei Pharmaceutical Co., Ltd.
Chem Pharm Bull (Tokyo). 2020;68(10):981-988. doi: 10.1248/cpb.c20-00460.
Recently, owing to their pharmaceutical and clinical utility, mini-tablets have been well studied by researchers. Mini-tablets are usually manufactured by compression molding using a multiple-tip tool in a rotary tableting machine. Owing to their special structure, ensuring uniformity is a very important challenge in the manufacturability of mini-tablets using the multiple-tip tool. In this study, we aimed to evaluate the weight variation in mini-tablets produced by a multiple-tip tool, which is considered to be the root cause affecting the uniformity, and to investigate the physical properties of drug granules and tableting conditions in a rotary tableting machine that could reduce this weight variation. In addition, the relationship between these factors and response was visualized using response surface analysis. It was shown that the weight variation in mini-tablets produced by a multiple-tip tool was reduced when using a forced feeder compared with an open feeder. Furthermore, in the case of an open feeder, the optimal range of the average particle size diameter of drug granules and the rotational speed of the rotating disc in the rotary tableting machine were determined from response surface analysis. It was suggested that it is possible to reduce the weight variation in the mini-tablets by selecting drug granules with an average particle size diameter of 100-150 µm and using tableting conditions with a rotational speed of 40-60 rpm. This study elucidated the factors that affect uniformity and determined their optimal range for the manufacture of mini-tablets.
最近,由于其在药物方面的应用和临床实用性,微型片剂已经引起了研究人员的广泛关注。微型片剂通常通过在旋转压片机中使用多尖端工具压缩成型来制造。由于其特殊的结构,确保均匀性是使用多尖端工具制造微型片剂的可制造性中的一个非常重要的挑战。在这项研究中,我们旨在评估由多尖端工具生产的微型片剂的重量变化,这被认为是影响均匀性的根本原因,并研究旋转压片机中的药物颗粒的物理性质和压片条件,以减少这种重量变化。此外,使用响应面分析来可视化这些因素与响应之间的关系。结果表明,与开放式给料器相比,使用强制给料器可以减少由多尖端工具生产的微型片剂的重量变化。此外,在开放式给料器的情况下,从响应面分析确定了药物颗粒的平均粒径和旋转压片机中旋转盘的转速的最佳范围。结果表明,通过选择平均粒径为 100-150 μm 的药物颗粒并使用转速为 40-60 rpm 的压片条件,可以减少微型片剂的重量变化。本研究阐明了影响均匀性的因素,并确定了其制造微型片剂的最佳范围。