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高载药量直接压片的改善溶出度的微粉化 API 干涂层。

Dry coating of micronized API powders for improved dissolution of directly compacted tablets with high drug loading.

机构信息

New Jersey Center for Engineered Particulates, New Jersey Institute of Technology, Newark, NJ 07102, USA.

出版信息

Int J Pharm. 2013 Feb 14;442(1-2):74-85. doi: 10.1016/j.ijpharm.2012.08.004. Epub 2012 Aug 8.

Abstract

Motivated by our recent study showing improved flow and dissolution rate of the active pharmaceutical ingredient (API) powders (20 μm) produced via simultaneous micronization and surface modification through continuous fluid energy milling (FEM) process, the performance of blends and direct compacted tablets with high drug loading is examined. Performance of 50 μm API powders dry coated without micronization is also considered for comparison. Blends of micronized, non-micronized, dry coated or uncoated API powders at 30, 60 and 70% drug loading, are examined. The results show that the blends containing dry coated API powders, even micronized ones, have excellent flowability and high bulk density compared to the blends containing uncoated API, which are required for direct compaction. As the drug loading increases, the difference between dry coated and uncoated blends is more pronounced, as seen in the proposed bulk density-FFC phase map. Dry coating led to improved tablet compactibility profiles, corresponding with the improvements in blend compressibility. The most significant advantage is in tablet dissolution where for all drug loadings, the t(80) for the tablets with dry coated APIs was well under 5 min, indicating that this approach can produce nearly instant release direct compacted tablets at high drug loadings.

摘要

受我们最近的研究结果启发,该研究表明通过连续流能研磨(FEM)工艺同时进行微粉化和表面改性,可以提高活性药物成分(API)粉末(20μm)的流动性和溶解速率。本研究考察了高载药量的混合物和直接压片的性能。还考虑了未经微粉化的 50μm API 粉末的干涂性能进行比较。考察了载药量为 30%、60%和 70%的微粉化 API 粉末、非微粉化 API 粉末、干涂 API 粉末和未涂 API 粉末的混合物。结果表明,与含有未涂 API 的混合物相比,即使是微粉化的干涂 API 粉末的混合物也具有出色的流动性和高堆密度,这是直接压片所必需的。随着载药量的增加,干涂和未涂 API 混合物之间的差异更加明显,如提出的堆密度-FFC 相图所示。干涂导致片剂可压缩性曲线得到改善,这与混合物可压缩性的提高相对应。最显著的优势在于片剂的溶解性能,对于所有载药量,涂有干 API 的片剂的 t(80)都在 5 分钟以下,表明该方法可以在高载药量下生产几乎立即释放的直接压片。

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