Kimmel Vincent, Ercolin Enrico, Zimmer Robin, Yörük Muhammet, Winck Judith, Thommes Markus
Laboratory of Solids Process Engineering, Department of Biochemical and Chemical Engineering, Technical University Dortmund, Emil-Figge-Str. 68, 44227 Dortmund, Germany.
INVITE GmbH, Drug Delivery Innovation Center, Chempark Building W32, Otto-Bayer-Str. 32, 51061 Cologne, Germany.
Pharmaceutics. 2024 Feb 21;16(3):301. doi: 10.3390/pharmaceutics16030301.
Melt viscosity is an essential property in pharmaceutical processes such as mixing, extrusion, fused deposition modeling, and melt coating. Measuring and modeling of the melt viscosity for drug/polymer mixtures is essential for optimization of the manufacturing process. In this work, the melt viscosity of nine formulations containing the drug substances acetaminophen, itraconazole, and griseofulvin, as well as the pharmaceutical polymers Eudragit EPO, Soluplus, and Plasdone S-630, were analyzed with a rotational and oscillatory rheometer. The shear rate, temperature, and drug fraction were varied systematically to investigate their influence on viscosity. The results for the pure polymers showed typical shear-thinning behavior and are fundamental for modeling with the Carreau and Arrhenius approaches. The investigations of the viscosity of the drug/polymer mixtures resulted in a plasticizing or a filler effect, depending on the type of drug and the phase behavior. A drug shift factor was proposed to model the change in viscosity as a function of the drug fraction. On this basis, a universal model to describe the melt viscosity of drug/polymer mixtures was developed, considering shear rate, temperature, and drug fraction.
熔体粘度是制药过程中的一项重要性质,如混合、挤出、熔融沉积建模和熔体包衣等过程。测量和模拟药物/聚合物混合物的熔体粘度对于优化制造工艺至关重要。在这项工作中,使用旋转和振荡流变仪分析了含有对乙酰氨基酚、伊曲康唑和灰黄霉素等药物以及药用聚合物Eudragit EPO、Soluplus和Plasdone S-630的九种配方的熔体粘度。系统地改变剪切速率、温度和药物比例,以研究它们对粘度的影响。纯聚合物的结果显示出典型的剪切变稀行为,这是使用Carreau和Arrhenius方法进行建模的基础。对药物/聚合物混合物粘度的研究根据药物类型和相行为产生了增塑或填充效应。提出了一个药物位移因子来模拟粘度随药物比例的变化。在此基础上,开发了一个通用模型来描述药物/聚合物混合物的熔体粘度,该模型考虑了剪切速率、温度和药物比例。