Department of Pharmaceutical Technology and Biopharmaceutics, University of Bonn, Gerhard-Domagk-Str. 3, 53121, Bonn, Germany.
AAPS PharmSciTech. 2022 Jun 25;23(6):176. doi: 10.1208/s12249-022-02331-8.
Process simulation facilitates scale-up of hot-melt extrusion (HME) and enhances proper understanding of the underlying critical process parameters. However, performing numeric simulations requires profound knowledge of the employed materials' properties. For example, an accurate description of the compounds' melt rheology is paramount for proper simulations. Hence, sample preparation needs to be optimized to yield results as predictive as possible. To identify the optimal preparation method for small amplitude oscillatory shear (SAOS) rheological measurements, binary mixtures of hydroxypropylmethylcellulose acetate succinate or methacrylic acid ethyl acrylate copolymer (Eudragit L100-55) together with the model drugs celecoxib and ketoconazole were prepared. The physical powder mixtures were introduced into the SAOS as a compressed tablet or a disk prepared via vacuum compression molding (VCM). Simulations with the derived parameters were conducted and compared to lab-scale extrusion trials. VCM was identified as the ideal preparation method resulting in the highest similarity between simulated and experimental values, while simulation based on conventional powder-based methods insufficiently described the HME process.
过程模拟有助于热熔挤出(HME)的放大,并增强对潜在关键工艺参数的正确理解。然而,进行数值模拟需要对所使用材料的特性有深入的了解。例如,对化合物熔体流变性的准确描述对于正确的模拟至关重要。因此,需要优化样品制备以获得尽可能具有预测性的结果。为了确定小振幅振荡剪切(SAOS)流变测量的最佳制备方法,将羟丙甲基纤维素醋酸琥珀酸酯或甲基丙烯酸乙酯共聚物(Eudragit L100-55)与模型药物塞来昔布和酮康唑的二元混合物制备。将物理粉末混合物作为压缩片剂或通过真空压缩成型(VCM)制备的圆盘引入到 SAOS 中。对得出的参数进行了模拟,并与实验室规模的挤出试验进行了比较。VCM 被确定为理想的制备方法,模拟值与实验值之间的相似度最高,而基于常规粉末方法的模拟则不足以描述 HME 过程。