Department of Chemical and Biological Engineering, University of Sheffield, UK.
School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, PR China.
Int J Pharm. 2024 Oct 25;664:124587. doi: 10.1016/j.ijpharm.2024.124587. Epub 2024 Aug 13.
Predicting the mechanical properties of powder mixtures without extensive experimentation is important for model driven design in solid dosage form manufacture. Here, a new binary interaction-based model is proposed for predicting the compressibility and compactability of directly compressed pharmaceutical powder mixtures based on the mixture composition. The model is validated using blends of MCC, lactose and paracetamol or ibuprofen. Both compressibility and compactability profiles are predicted well for a variety of blend compositions of ternary mixtures for the two formulations. The model performs well over a wide range of compositions for both blends and better than either an ideal mixing model or a ternary interaction model. A design of experiments which reduces the amount of API required for fitting the model parameters for a new formulation is proposed to reduce amount of API required. The design requires only three blends containing API. The model gives similar performance to the well-known Reynolds et al. model (2017) when trained using the same data sets. The binary interaction model approach is generalizable to other powder mixture properties. The model presented in this work is limited to curve-fitting of empirical compaction models for mixtures of common pharmaceutical powders and is not intended to provide guidance on the practical operating space (or design space) limits.
在固体剂型制造中,无需进行大量实验即可预测粉末混合物的机械性能对于基于模型的设计非常重要。这里提出了一种新的基于二元相互作用的模型,用于根据混合物成分预测直接压缩制药粉末混合物的可压缩性和可压实性。该模型使用 MCC、乳糖和扑热息痛或布洛芬的混合物进行了验证。对于两种配方的三种混合物的各种混合物组成,均可以很好地预测可压缩性和可压实性曲线。该模型在两种混合物的宽组成范围内表现良好,并且优于理想混合模型或三元相互作用模型。提出了一种实验设计,可减少拟合新配方模型参数所需的 API 量,从而减少所需的 API 量。该设计仅需要包含 API 的三种混合物。当使用相同的数据集进行训练时,该模型与著名的 Reynolds 等人的模型(2017 年)具有相似的性能。二元相互作用模型方法可推广到其他粉末混合物性质。本文提出的模型仅限于常见药物粉末混合物的经验压实模型的曲线拟合,并且不旨在提供关于实际操作空间(或设计空间)限制的指导。