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首页> 外文期刊>International Journal of Pharmaceutics >Multi-dimensional population balance modelling of pharmaceutical formulations for continuous twin-screw wet granulation: Determination of liquid distribution
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Multi-dimensional population balance modelling of pharmaceutical formulations for continuous twin-screw wet granulation: Determination of liquid distribution

机译:用于连续双螺杆湿造粒的药物配方的多维人口平衡模型:液体分布的测定

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摘要

Two-dimensional population balance model (PBM) is developed in order to model pharmaceutical granules formation in a twin-screw wet granulator. Granule size and liquid content are considered as internal coordinates, while axial length of granulator is considered as external coordinate. Two types of initial liquid distribution are considered for the model development, i.e. constant and linear distributions. The main focus is on modeling and validation of liquid content distribution of granules. Regime-separated approach was used in order to capture the non-homogeneity of the granulator. The plug flow regime is considered for the conveying zone, while well-mixed regime is assumed for the kneading zone of twin-screw granulator. Aggregation and breakage are considered as the main mechanisms for granule formation and size control. Cell average method is used for solution of the PBM based on lumped parameter approach. In order to determine experimentally the distribution of liquid, liquid binder by dye addition was used in the process. The model findings are calibrated and validated by comparing with measured liquid content in each size fraction. The measured data is collected on a 12 mm twin-screw wet granulator using microcrystalline cellulose (MCC) and water soluble dye plus water as binder. The model indicated to be valid for MCC and needs to be validated with further excipients. The results revealed that increasing screw speed led to more uniform liquid distribution. Finally, the model findings indicated that 2D PBM is capable of predicting liquid distribution, and can be used as predictive tool in pharmaceutical continuous granulation.
机译:开发了二维人口平衡模型(PBM),以便在双螺杆湿造粒机中模拟药物颗粒。颗粒尺寸和液体含量被认为是内部坐标,而造粒机的轴向长度被认为是外部坐标。考虑两种类型的初始液体分布,用于模型开发,即恒定和线性分布。主要重点是颗粒液体含量分布的建模和验证。使用制度分离的方法以捕获造粒机的非均匀性。对于输送区,考虑插头流动状态,而双螺杆造粒机的捏合区域假设良好的混合状态。聚集和破损被认为是颗粒形成和尺寸控制的主要机制。电池平均法用于基于集总参数方法的PBM解决方案。为了通过实验确定液体的分布,在该方法中使用染料添加液体粘合剂。通过与每个尺寸分数中的测量的液体含量进行比较,通过比较模型结果进行校准和验证。使用微晶纤维素(MCC)和水溶性染料加水作为粘合剂在12毫米双螺杆湿造粒机上收集测量的数据。表示对MCC有效的模型,并且需要用进一步的赋形剂验证。结果表明,螺杆速度增加导致更均匀的液体分布。最后,模型结果表明,2D PBM能够预测液体分布,并且可以用作药物连续造粒中的预测工具。

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