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首页> 外文期刊>Drying technology: An International Journal >Freeze-Drying of Pharmaceutical Proteins in Vials:Modeling of Freezing and Sublimation Steps
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Freeze-Drying of Pharmaceutical Proteins in Vials:Modeling of Freezing and Sublimation Steps

机译:小瓶中药物蛋白的冷冻干燥:冷冻和升华步骤的建模

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摘要

The commercial finite element code FEMLAB was used to perform two-dimensional axisymmetric simulations of the temperature profiles and the moving front velocities of standard BSA (bovine serum albumin)-based formulations used to stabilize pharmaceutical proteins during the freeze-drying process.The simulations were validated with both experimental and numerical approaches.In an initial step,the heat transfer phenomena taking place during the cooling of liquid solutions were studied in commercial size glass vials without freezing or sublimation.Then,this model was extended and validated for the freezing process of aqueous BSA-based solutions encountered in the industrial freeze-drying processes with the same vials in order to confirm the identified values of the different thermal conductances between the product and the shelf and between the product and the surroundings.Finally,the conductances between the product and the shelf and between the vial and the surroundings thus determined were used in a dynamic sublimation model with two zones and a moving sublimation front similar to the ones previously proposed in the literature.The simulations showed a satisfactory agreement between experimental and simulated data.The results of this study demonstrated that the freeze-drying process of pharmaceutical proteins in glass vials for standard industrial operating conditions was mainly controlled by the heat transfer from the shelf and the surroundings to the product sublimation front.
机译:商业有限元代码FEMLAB用于对温度曲线和基于BSA(牛血清白蛋白)的标准配方进行二维轴对称模拟,以稳定冷冻干燥过程中的药物蛋白质。首先,研究了在没有冷冻或升华的商业规模玻璃瓶中液体溶液冷却过程中发生的传热现象。然后,对该模型进行了扩展和验证在工业冷冻干燥过程中使用相同的小瓶遇到的基于BSA的水溶液,以确认产品与货架之间以及产品与周围环境之间不同导热系数的确定值。最后,产品之间的导热系数以及架子和小瓶与周围环境之间的距离w在具有两个区域和移动升华前沿的动态升华模型中使用了类似于文献中先前提出的模型。仿真结果表明,实验数据和模拟数据之间具有令人满意的一致性。研究结果表明,冷冻干燥过程在标准工业操作条件下,玻璃小瓶中的药物蛋白主要受架子和周围环境向产品升华前沿的传热控制。

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