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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Upscaling of the hot-melt extrusion process: Comparison between laboratory scale and pilot scale production of solid dispersions with miconazole and Kollicoat? IR
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Upscaling of the hot-melt extrusion process: Comparison between laboratory scale and pilot scale production of solid dispersions with miconazole and Kollicoat? IR

机译:热熔挤出工艺的升级:使用咪康唑和Kollicoat生产固体分散体的实验室规模与中试规模之间的比较?红外

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摘要

Since only limited amount of drug is available in early development stages, the extruder design has evolved towards smaller batch sizes, with a more simple design. An in dept study about the consequences of the differences in design is mandatory and little can be found in literature. Miconazole and Kollicoat? IR were used as model drug and carrier for this study. Two series of solid dispersions were made with a laboratory scale (internal circulation-simple screw design) and a pilot scale extruder (continuous throughput-modular screw design). Efforts were made to match the operating parameters as close as possible (residence time, extrusion temperature and screw speed). The samples were analyzed with modulated DSC straight after production and after exact 24 h and 15 days storage at -26°C. The kinetic miscibility of the samples prepared with the laboratory scale extruder was slightly higher than the samples prepared with the pilot scale extruder. As the solid dispersions with high drug load were unstable over time, demixing occurred, slightly faster for the samples prepared with the laboratory scale extruder. After 15 days, the levels of molecular mixing were comparable, pointing to the predictive value of samples prepared on laboratory scale.
机译:由于在开发的早期阶段只能使用数量有限的药物,因此挤出机的设计已朝着更小批量的方向发展,设计更加简单。关于设计差异的后果的深入研究是强制性的,在文献中几乎找不到。咪康唑和Kollicoat? IR被用作该研究的模型药物和载体。用实验室规模(内部循环-简单螺杆设计)和中型规模挤出机(连续通过量-模块化螺杆设计)制备了两个系列的固体分散体。努力使操作参数尽可能接近(停留时间,挤出温度和螺杆速度)。样品在生产后以及在-26°C准确存储24小时和15天后立即用调制DSC分析。用实验室规模挤出机制备的样品的动力学混溶性略高于用中试规模挤出机制备的样品。由于具有高载药量的固体分散体随时间推移不稳定,因此发生了混合,对于使用实验室规模挤出机制备的样品而言,混合略快。 15天后,分子混合的水平相当,表明以实验室规模制备的样品的预测价值。

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