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模拟美国药典桨法溶出度测定仪中的流体动力学条件。

Simulating the hydrodynamic conditions in the United States Pharmacopeia paddle dissolution apparatus.

作者信息

McCarthy Leonard G, Kosiol Carolin, Healy Anne Marie, Bradley Geoff, Sexton James C, Corrigan Owen I

机构信息

Department of Pharmaceutics and Pharmaceutical Technology, Trinity College Dublin, Ireland.

出版信息

AAPS PharmSciTech. 2003;4(2):E22. doi: 10.1208/pt040222.

Abstract

The objective of this work was to examine the feasibility of developing a high-performance computing software system to simulate the United States Pharmacopeia (USP) dissolution apparatus 2 (paddle apparatus) and thus aid in characterizing the fluid hydrodynamics in the method. The USP apparatus was modeled using the hydrodynamic package Fluent. The Gambit program was used to create a "wireframe" of the apparatus and generate the 3-dimensional grids for the computational fluid dynamics solver. The Fluent solver was run on an IBM RS/6000 SP distributed memory parallel processor system, using 8 processors. Configurations with and without a tablet present were developed and examined. Simulations for a liquid-filled vessel at a paddle speed of 50 rpm were generated. Large variations in fluid velocity magnitudes with position in the vessel were evident. Fluid velocity predictions were in good agreement with those previously published, using laser Doppler velocity measurements. A low-velocity domain was evident directly below the center of the rotating paddle. The model was extended to simulate the impact of the presence of a cylindrical tablet in the base of the dissolution vessel. The presence of the tablet complicated the local fluid flow, and large fluid shear rates were evident at the base of the compact. Fluid shear rates varied depending on the tablet surface and the location on the surface and were consistent with the reported asymmetrical dissolution of model tablets. The approach has the potential to explain the variable dissolution results reported and to aid in the design/prediction of optimal dissolution conditions for in vitro--in vivo correlations.

摘要

这项工作的目的是研究开发一种高性能计算软件系统的可行性,该系统可模拟美国药典(USP)溶出装置2(桨法装置),从而有助于表征该方法中的流体动力学特性。使用流体动力学软件包Fluent对USP装置进行建模。Gambit程序用于创建该装置的“线框”,并为计算流体动力学求解器生成三维网格。Fluent求解器在IBM RS/6000 SP分布式内存并行处理器系统上运行,使用8个处理器。开发并研究了有和没有片剂的配置。生成了桨叶转速为50 rpm时充满液体的容器的模拟结果。容器内流体速度大小随位置的变化很大。流体速度预测结果与先前使用激光多普勒速度测量发表的结果吻合良好。在旋转桨叶中心正下方明显存在一个低速区域。该模型得到扩展,以模拟溶出容器底部存在圆柱形片剂的影响。片剂的存在使局部流体流动变得复杂,在片剂的底部明显存在较大的流体剪切速率。流体剪切速率因片剂表面及其表面位置而异,并且与报道的模型片剂的不对称溶出一致。该方法有可能解释所报道的可变溶出结果,并有助于设计/预测体外-体内相关性的最佳溶出条件。

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