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采用新型微晶纤维素(PH-M系列)、低取代羟丙基纤维素或球形糖颗粒,通过直接压片法制备速崩片。

Preparation of rapidly disintegrating tablet using new types of microcrystalline cellulose (PH-M series) and low substituted-hydroxypropylcellulose or spherical sugar granules by direct compression method.

作者信息

Ishikawa T, Mukai B, Shiraishi S, Utoguchi N, Fujii M, Matsumoto M, Watanabe Y

机构信息

Department of Pharmaceutics and Biopharmaceutics, Showa Pharmaceutical University, Machida, Tokyo, Japan.

出版信息

Chem Pharm Bull (Tokyo). 2001 Feb;49(2):134-9. doi: 10.1248/cpb.49.134.

Abstract

To decrease the sensation of roughness when a tablet, which is rapidly disintegrated by saliva (rapidly disintegrating tablet), is orally taken, we prepared rapidly disintegrating tablets using microcrystalline cellulose (Avicel PH-M series), a new type of pharmaceutical excipient that is spherical and has a very small particle size (particle size, 7-32 microm), instead of conventional microcrystalline cellulose (PH-102) used in the formulation of tablets containing acetaminophen or ascorbic acid as model drugs for tableting study. Tablets (200 mg) prepared using spherical microcrystalline cellulose, PH-M-06, with the smallest particle size (mean value, 7 microm) had sufficient crushing tolerance (approximately, 8 kg) and were very rapidly, disintegrated (within 15 s) when the mixing ratio of PH-M-06 to low-substituted hydroxypropylcellulose (L-HPC) was 9:1. Sensory evaluation by volunteers showed that PH-M-06 was superior to PH-102 in terms of the feeling of roughness in the mouth. Consequently, it was found that particle size is an important factor for tablet preparation using microcrystalline cellulose. It is possible to prepare drugs such as acetaminophen and ascorbic acid (concentration of approximately 50%) in the tablet form using PH-NM-06 in combination with L-HPC as a good disintegrant at a low compression force (1-6 kN). To solve the problem of poor fluidity in the preparation of these tablets, we investigated the use of spherical sugar granules (Nonpareil, NP-101 (sucrose and starch, composition ratio of 7:3), NP-103 (purified sucrose), NP-107 (purified lactose) and NP-108 (purified D-mannitol)). Rapidly disintegrating tablets can be prepared by the direct compression method when suitable excipients such as fine microcrystalline cellulose (PH-M-06) and spherical sugar granules (NP) are used.

摘要

为了减少口腔摄入唾液可使其快速崩解的片剂(速崩片)时的粗糙感,我们使用微晶纤维素(Avicel PH-M系列)制备了速崩片,微晶纤维素是一种新型药用辅料,呈球形且粒径非常小(粒径为7 - 32微米),以替代用于制备含对乙酰氨基酚或抗坏血酸片剂的传统微晶纤维素(PH-102),将其作为压片研究的模型药物。使用粒径最小(平均值为7微米)的球形微晶纤维素PH-M-06制备的200毫克片剂具有足够的抗压强度(约8千克),并且当PH-M-06与低取代羟丙基纤维素(L-HPC)的混合比例为9:1时,崩解速度非常快(15秒内)。志愿者的感官评价表明,在口腔粗糙感方面,PH-M-06优于PH-102。因此,发现粒径是使用微晶纤维素制备片剂的一个重要因素。使用PH-NM-06与L-HPC作为良好的崩解剂,在低压力(1 - 6千牛)下可以制备出对乙酰氨基酚和抗坏血酸等药物(浓度约为50%)的片剂。为了解决这些片剂制备过程中流动性差的问题,我们研究了球形糖颗粒(无核小蜜饯,NP-101(蔗糖和淀粉,组成比例为7:3)、NP-103(精制蔗糖)、NP-107(精制乳糖)和NP-108(精制D-甘露醇))的使用。当使用合适的辅料如细微晶纤维素(PH-M-06)和球形糖颗粒(NP)时,可通过直接压片法制备速崩片。

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