Eda Takashi, Miyazaki Yasunori, Uchino Tomonobu, Kagawa Yoshiyuki
Department of Clinical Pharmaceutics, School of Pharmaceutical Sciences, University of Shizuoka.
Chem Pharm Bull (Tokyo). 2020;68(3):251-257. doi: 10.1248/cpb.c19-00888.
A concise spherical granulation method is required to prepare extemporaneously granules remanufactured from oral dosage forms for administration to individuals who cannot swallow tablets or capsules. In this study, we determined the feasibility of spherical granulation using a planetary centrifugal mixer. A model formulation, 20% ibuprofen (IBP) granules, was prepared using a lactose/cornstarch (7 : 3, w/w) mixture or D-mannitol as diluents, and changes in granule characteristics (mean diameter (d50), distribution range of granule size (span), and yield) were evaluated according to the amount of water added and the granulation time. The amount of water was assessed using the plastic limit value as measured using a digital force gauge. We successfully produced granules, and larger amounts of water and longer granulation times resulted in larger d50 values and smaller span values. The optimal granulation time was 45 s and the optimal water contents were 70 and 67.5% of the plastic limit value for the lactose/cornstarch mixture and D-mannitol, respectively. When compared to commercial 20% IBP granules, powder X-ray diffraction and differential scanning calorimetry analyses showed that the granulation process did not alter the crystallinity of the drug. Thus, this novel granulation method using a planetary centrifugal mixer may be a promising technique for compounding in pharmacies and in pharmaceutical manufacturing.
需要一种简洁的球形制粒方法来临时制备由口服剂型重新制造的颗粒,用于给不能吞咽片剂或胶囊的个体给药。在本研究中,我们确定了使用行星离心混合机制备球形颗粒的可行性。使用乳糖/玉米淀粉(7∶3,w/w)混合物或D-甘露醇作为稀释剂制备了一种模型制剂,即20%布洛芬(IBP)颗粒,并根据加水量和制粒时间评估颗粒特性(平均直径(d50)、粒度分布范围(跨度)和产率)的变化。使用数字测力计测量的塑限来评估加水量。我们成功制备出了颗粒,并且加水量越大、制粒时间越长,d50值越大,跨度值越小。乳糖/玉米淀粉混合物和D-甘露醇的最佳制粒时间分别为45秒,最佳含水量分别为塑限值的70%和67.5%。与市售20% IBP颗粒相比,粉末X射线衍射和差示扫描量热分析表明,制粒过程未改变药物的结晶度。因此,这种使用行星离心混合机的新型制粒方法可能是药房配药和制药生产中一种有前景的技术。