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采用 SeDeM 专家图系统 I 开发多单位微丸系统片剂 I:不同粒径的微丸。

Development of multiple-unit pellet system tablets by employing the SeDeM expert diagram system I: pellets with different sizes.

机构信息

a Centre of Excellence for Pharmaceutical Sciences , North-West University , Potchefstroom , South Africa.

出版信息

Pharm Dev Technol. 2018 Sep;23(7):706-714. doi: 10.1080/10837450.2017.1342657. Epub 2017 Jul 3.

DOI:10.1080/10837450.2017.1342657
PMID:28612663
Abstract

Multiple-unit pellet systems (MUPS) provide several pharmacokinetic and pharmacodynamic advantages over single-unit dosage forms, however, compression of pellets into MUPS tablets present certain challenges. Although the SeDeM Expert Diagram System (SeDeM EDS) was originally developed to provide information about the most appropriate excipient and the minimum amount thereof that is required for producing direct compressible tablets, this study investigated the possibility to apply the SeDeM EDS in the production of MUPS tablets. In addition, the effect of pellet size (i.e. 0.5, 1.0, 1.5, 2.0, and 2.5 mm) on SeDeM EDS predictions regarding the MUPS tablet formulations was investigated. The compressibility incidence factor values were below the acceptable value (i.e. 5.00) for all the pellet sizes. Kollidon VA 64 was identified as the most appropriate excipient to improve compressibility. The compression indices, namely, the parameter index (IP), parametric profile index (IPP), and good compression index (GCI) indicated that acceptable MUPS tablets could be produced from the final pellet-excipient blends based on predictions from the SeDeM EDS. These MUPS tablets complied with specifications for friability, hardness, and mass variation. The SeDeM EDS system is therefore applicable to assist in the formulation of acceptable MUPS tablets.

摘要

多单元颗粒系统 (MUPS) 相对于单单元剂型具有多种药代动力学和药效学优势,然而,将颗粒压缩成 MUPS 片剂存在一定的挑战。虽然 SeDeM 专家图系统 (SeDeM EDS) 最初是为了提供关于生产可直接压缩片剂最合适的赋形剂及其最小用量的信息而开发的,但本研究探讨了将 SeDeM EDS 应用于 MUPS 片剂生产的可能性。此外,还研究了颗粒大小(即 0.5、1.0、1.5、2.0 和 2.5mm)对 MUPS 片剂配方的 SeDeM EDS 预测的影响。所有颗粒大小的可压缩性发生率因子值均低于可接受值(即 5.00)。Kollidon VA 64 被确定为改善可压缩性的最合适赋形剂。压缩指数,即参数指数 (IP)、参数曲线指数 (IPP) 和良好压缩指数 (GCI) 表明,基于 SeDeM EDS 的预测,最终颗粒-赋形剂混合物可以生产出可接受的 MUPS 片剂。这些 MUPS 片剂符合脆碎度、硬度和质量变化的规格。因此,SeDeM EDS 系统适用于辅助可接受的 MUPS 片剂的配方设计。

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