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首页> 外文期刊>International Journal of Pharmaceutics >Computational hydrodynamic comparison of a mini vessel and a USP 2 dissolution testing system to predict the dynamic operating conditions for similarity of dissolution performance
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Computational hydrodynamic comparison of a mini vessel and a USP 2 dissolution testing system to predict the dynamic operating conditions for similarity of dissolution performance

机译:迷你血管和USP 2溶解试验系统的计算流体动力学比较预测溶出性能相似性的动态操作条件

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摘要

The hydrodynamic characteristics of a mini vessel and a USP 2 dissolution testing system were obtained and compared to predict the tablet-liquid mass transfer coefficient from velocity distributions near the tablet and establish the dynamic operating conditions under which dissolution in mini vessels could be conducted to generate concentration profiles similar to those in the USP 2. Velocity profiles were obtained experimentally using Particle Image Velocimetry (PIV). Computational Fluid Dynamics (CFD) was used to predict the velocity distribution and strain rate around a model tablet. A CFD-based mass transfer model was also developed. When plotted against strain rate, the predicted tablet-liquid mass transfer coefficient was found to be independent of the system where it was obtained, implying that a tablet would dissolve at the same rate in both systems provided that the concentration gradient between the tablet surface and the bulk is the same, the tablet surface area per unit liquid volume is identical, and the two systems are operated at the appropriate agitation speeds specified in this work. The results of this work will help dissolution scientists operate mini vessels so as to predict the dissolution profiles in the USP 2, especially during the early stages of drug development.
机译:获得迷你容器和USP 2溶解试验系统的流体动力学特性,并比较了从平板电脑附近的速度分布预测片剂 - 液体传质系数,并建立动态操作条件,可以进行迷你血管中的溶解以产生使用与USP中的浓度分布类似。使用颗粒图像VEMIFETRY(PIV)通过实验获得速度谱。计算流体动力学(CFD)用于预测模型平板电脑周围的速度分布和应变率。还开发了基于CFD的传质模型。当绘制应变速率时,发现预测的片剂 - 液体传质系数与获得的系统无关,这意味着片剂在两个系统中以相同的速率溶解,条件是片剂表面之间的浓度梯度和散装是相同的,每单位液体体积的平板表面面积相同,并且在这项工作中规定的适当搅拌速度操作两个系统。这项工作的结果将有助于解散科学家运营迷你船只,以预测USP 2中的溶解曲线,特别是在药物发育的早期阶段。

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