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运用计算流体动力学比较 TIM-自动化胃腔与 USP 仪器 II 的切变率和湍流。

Using Computational Fluid Dynamics to Compare Shear Rate and Turbulence in the TIM-Automated Gastric Compartment With USP Apparatus II.

机构信息

Pharmaceutical Technology & Development, AstraZeneca, Macclesfield, UK.

Pharmaceutical Technology & Development, AstraZeneca, Macclesfield, UK.

出版信息

J Pharm Sci. 2018 Jul;107(7):1911-1919. doi: 10.1016/j.xphs.2018.03.019. Epub 2018 Mar 30.

Abstract

We use computational fluid dynamics to compare the shear rate and turbulence in an advanced in vitro gastric model (TIMagc) during its simulation of fasted state Migrating Motor Complex phases I and II, with the United States Pharmacopeia paddle dissolution apparatus II (USPII). A specific focus is placed on how shear rate in these apparatus affects erosion-based solid oral dosage forms. The study finds that tablet surface shear rates in TIMagc are strongly time dependant and fluctuate between 0.001 and 360 s. In USPII, tablet surface shear rates are approximately constant for a given paddle speed and increase linearly from 9 s to 36 s as the paddle speed is increased from 25 to 100 rpm. A strong linear relationship is observed between tablet surface shear rate and tablet erosion rate in USPII, whereas TIMagc shows highly variable behavior. The flow regimes present in each apparatus are compared to in vivo predictions using Reynolds number analysis. Reynolds numbers for flow in TIMagc lie predominantly within the predicted in vivo bounds (0.01-30), whereas Reynolds numbers for flow in USPII lie above the predicted upper bound when operating with paddle speeds as low as 25 rpm (33).

摘要

我们使用计算流体动力学来比较在模拟空腹状态迁移性运动复合相 I 和 II 期间,先进的体外胃模型(TIMagc)与美国药典桨式溶解仪 II(USPII)中的剪切率和湍流。特别关注这些仪器中的剪切率如何影响基于侵蚀的固体口服剂型。研究发现,TIMagc 中片剂表面的剪切率强烈依赖于时间,在 0.001 和 360 s 之间波动。在 USPII 中,对于给定的桨叶速度,片剂表面的剪切率大致恒定,并随着桨叶速度从 25 rpm 增加到 100 rpm 线性增加,从 9 s 增加到 36 s。在 USPII 中观察到片剂表面剪切率与片剂侵蚀率之间存在很强的线性关系,而 TIMagc 表现出高度可变的行为。通过雷诺数分析比较了每个仪器中的流动状态与体内预测。TIMagc 中流动的雷诺数主要在预测的体内范围内(0.01-30),而当以低至 25 rpm 的桨叶速度操作时,USPII 中的流动雷诺数超过了预测的上限(33)。

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