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基于实验的冷冻干燥过程工艺设计空间构建方法:设计优化和稳健的药物冷冻干燥工艺的有效工具。

An Experimental-Based Approach to Construct the Process Design Space of a Freeze-Drying Process: An Effective Tool to Design an Optimum and Robust Freeze-Drying Process for Pharmaceuticals.

机构信息

Fresenius-Kabi Deutschland GmbH, Product and Process Engineering Center, Global Manufacturing Pharmaceuticals, Bad Homburg, Germany.

Fresenius-Kabi Deutschland GmbH, Product and Process Engineering Center, Global Manufacturing Pharmaceuticals, Bad Homburg, Germany.

出版信息

J Pharm Sci. 2020 Jan;109(1):785-796. doi: 10.1016/j.xphs.2019.07.001. Epub 2019 Jul 6.

Abstract

The application of quality by design (QbD) is becoming an integral part of the formulation and process development for pharmaceutical products. An essential feature of the QbD philosophy is the design space. In this sense, a new approach to construct a process design space (PDS) for the primary drying section of a freeze-drying process is addressed in this paper. An effective customized design of experiments (DoE) is developed for freeze-drying experiments. The results obtained from the DoE are then used to construct the product-based PDS. The proposed product-based PDS construction approach has several advantages, including (1) eliminating assumptions on the heat transfer coefficient and dried product resistance, as it is constructed from experimental results specifically obtained from a given formulation, yielding more realistic and reliable results and (2) PDS construction based on a narrow range of product temperatures and considering the variations in product temperature and sublimation rate of vials across a shelf. This guarantees the effectiveness and robustness of the process and facilitates the process scale-up and transfer. The PDS developed herein was experimentally verified. The PDS predicted parameters were in excellent agreement with the experimentally obtained parameters.

摘要

质量源于设计(QbD)的应用正成为药物产品配方和工艺开发的一个组成部分。QbD 理念的一个重要特征是设计空间。从这个意义上说,本文提出了一种构建冷冻干燥工艺主干燥段工艺设计空间(PDS)的新方法。为冷冻干燥实验开发了有效的定制设计实验(DoE)。然后,使用从 DoE 获得的结果来构建基于产品的 PDS。所提出的基于产品的 PDS 构建方法具有几个优点,包括(1)从特定于给定配方的实验结果中构建,消除了对传热系数和干燥产品阻力的假设,从而产生更现实和可靠的结果,以及(2)基于产品温度的窄范围构建 PDS,并考虑到瓶中产品温度和升华率的变化。这保证了工艺的有效性和鲁棒性,并促进了工艺放大和转移。本文开发的 PDS 进行了实验验证。PDS 预测的参数与实验获得的参数非常吻合。

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