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Modeling of Disintegration and Dissolution Behavior of Mefenamic Acid Formulation Using Numeric Solution of Noyes-Whitney Equation with Cellular Automata on Microtomographic and Algorithmically Generated Surfaces

机译:用显微镜和算法生成的表面上带有细胞自动机的Noyes-Whitney方程数值解法对甲胺酸配方的崩解和溶解行为进行建模

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Manufacturing parameters may have a strong impact on the dissolution and disintegration of solid dosage forms. In line with process analytical technology (PAT) and quality by design approaches, computer-based technologies can be used to design, control, and improve the quality of pharmaceutical compacts and their performance. In view of shortcomings of computationally intensive finite-element or discrete-element methods, we propose a modeling and simulation approach based on numerical solutions of the Noyes-Whitney equation in combination with a cellular automata-supported disintegration model. The results from in vitro release studies of mefenamic acid formulations were compared to calculated release patterns. In silico simulations with our disintegration model showed a high similarity of release profile as compared to the experimental evaluation. Furthermore, algorithmically created virtual tablet structures were in good agreement with microtomography experiments. We conclude that the proposed computational model is a valuable tool to predict the influence of material attributes and process parameters on drug release from tablets.
机译:制造参数可能对固体剂型的溶解和崩解有很大影响。与过程分析技术(PAT)和按设计方法确定的质量相一致,基于计算机的技术可以用于设计,控制和改善药物粉饼的质量及其性能。鉴于计算密集型有限元法或离散元法的不足,我们提出了一种基于Noyes-Whitney方程数值解并结合细胞自动机支持的崩解模型的建模和仿真方法。将甲芬那酸制剂的体外释放研究结果与计算的释放模式进行了比较。与实验评估相比,在计算机模拟中我们的崩解模型显示了释放曲线的高度相似性。此外,算法创建的虚拟平板结构与显微断层照相术实验非常吻合。我们得出的结论是,提出的计算模型是预测材料属性和工艺参数对药物从片剂释放的影响的有价值的工具。

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