Oshima Takao, Sonoda Ryoichi, Ohkuma Moriyuki, Sunada Hisakazu
Drug Formulation Department, Central Research Laboratories, Kaken Pharmaceutical Co., Ltd., Fujieda, Shizuoka, Japan.
Chem Pharm Bull (Tokyo). 2007 Nov;55(11):1557-62. doi: 10.1248/cpb.55.1557.
The disintegratability of tablets prepared from two types of solid dispersions containing the water-soluble polymer TC-5 and the enteric polymer HP-55 as an excipient were compared. The disintegratability was better in the tablets of solid dispersions containing non-water-soluble HP-55 than those containing TC-5. In consideration of the dissolubility of solid dispersions containing HP-55, the mean diameter of the solid dispersion (coating powder) must be controlled to 120 microm or less, but as this markedly increases the adhesion/aggregation tendency of the particles (angle of repose: 47 degrees ), control of the adhesion/aggregation tendency emerged as another problem. Therefore, surface-modification was performed in a high-speed agitating granulator using 0.1% light anhydrous silicic acid as a surface modifier, and marked improvement in the flowability was observed. This made continuous tableting using a rotary tablet machine possible even with the poorly flowable solid dispersions. Also, in tableting of the solid dispersions, no recrystallization of amorphous itraconazole by the tableting pressure was observed, and the tablets maintained satisfactory dissolubility. Moreover, it was possible to obtain the rapidly disintegrating tablets with very satisfactory properties, i.e., a tablet hardness of 30 N or higher and a disintegration time of 30 s or less, by the addition of croscarmellose as a disintegrant at 2% to the surface-modified solid dispersion and selection of the tableting pressure at 4.5 kN.
比较了以水溶性聚合物TC - 5和肠溶聚合物HP - 55为辅料制备的两种固体分散体制备的片剂的崩解性。含非水溶性HP - 55的固体分散体片剂的崩解性优于含TC - 5的片剂。考虑到含HP - 55的固体分散体的溶解性,固体分散体(包衣粉)的平均直径必须控制在120微米或更小,但由于这会显著增加颗粒的粘附/聚集倾向(休止角:47度),控制粘附/聚集倾向成为另一个问题。因此,在高速搅拌制粒机中使用0.1%轻质无水硅酸作为表面改性剂进行表面改性,观察到流动性有显著改善。这使得即使是流动性差的固体分散体也能使用旋转压片机进行连续压片。此外,在固体分散体压片过程中,未观察到无定形伊曲康唑因压片压力而重结晶,片剂保持了令人满意的溶解性。而且,通过向表面改性的固体分散体中添加2%的交联羧甲基纤维素作为崩解剂并选择4.5 kN的压片压力,可以获得具有非常令人满意性能的快速崩解片剂,即片剂硬度为30 N或更高,崩解时间为30秒或更短。