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基于 TPGS 的配方高剪切湿法制粒(HSWG)工艺的综合方法:通过实验设计条件证明工艺稳健性。

An Integrated Approach for High-Shear Wet Granulation (HSWG) Processing of TPGS-Based Formulations: Demonstration of Process Robustness through Experimental Design Conditions.

机构信息

Oral Formulation Sciences and Technology, Merck & Co., Inc., West Point, PA 19486, USA.

Oral Formulation Sciences and Technology, Merck & Co., Inc., West Point, PA 19486, USA.

出版信息

J Pharm Sci. 2021 Aug;110(8):2934-2945. doi: 10.1016/j.xphs.2021.03.015. Epub 2021 Mar 29.

Abstract

The goal of this study was to understand the impact of high-shear wet granulation (HSWG) processing conditions on product attributes for a tablet formulation containing the non-ionic surfactant TPGS. The use of TPGS in oral solid drug products has been reported to be challenging due to the low melting temperature of TPGS. In addition, literature on TPGS-based HSWG formulations, especially practical processing and scale-up knowledge, is limited. Presented here is an extension of this TPGS application in a tablet formulation, with a focus on the HSWG processing and scale-up across different granulators. To understand the processing space for this TPGS-based HSWG formulation, two consecutive studies were conducted with different objectives. First, an exploratory study was conducted to understand the impact of extreme processing conditions on product attributes. Subsequently, a factorial design of experiment (DoE) study assessed the separate contributions and interactions from HSWG processing variables. The outcome of both studies led to a successful process scale-up and product transfer from lab to commercial development using different granulators. The TPGS-based formulation was demonstrated to provide robust downstream processing (improved flowability and reduced segregation potential) within a wide HSWG operating space, while having a minimal impact on product performance across different granulators.

摘要

本研究旨在了解高剪切湿法制粒(HSWG)工艺条件对含有非离子表面活性剂 TPGS 的片剂制剂产品属性的影响。由于 TPGS 的低熔点,其在口服固体制剂中的应用一直具有挑战性。此外,关于基于 TPGS 的 HSWG 制剂的文献,特别是实际的加工和放大知识,是有限的。本文扩展了 TPGS 在片剂制剂中的应用,重点介绍了不同制粒机中的 HSWG 加工和放大。为了了解这种基于 TPGS 的 HSWG 制剂的加工空间,进行了两项具有不同目的的连续研究。首先,进行了一项探索性研究,以了解极端工艺条件对产品属性的影响。随后,进行了一项因子设计实验(DoE)研究,评估了 HSWG 加工变量的单独贡献和相互作用。这两项研究的结果都成功地进行了工艺放大,并将产品从实验室转移到商业开发,使用了不同的制粒机。结果表明,基于 TPGS 的配方在广泛的 HSWG 操作空间内提供了强大的下游加工(改善了流动性和降低了分离潜力),同时对不同制粒机的产品性能影响最小。

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