Liu Huolong, Galbraith S C, Ricart Brendon, Stanton Courtney, Smith-Goettler Brandye, Verdi Luke, O'Connor Thomas, Lee Sau, Yoon Seongkyu
Department of Chemical Engineering, University of Massachusetts Lowell, 1 University Avenue, Lowell, MA 01854, United States.
Merck & Co., Inc., West Point, PA 19486, United States.
Int J Pharm. 2017 Jun 15;525(1):249-263. doi: 10.1016/j.ijpharm.2017.04.055. Epub 2017 Apr 24.
In this study, the influence of key process variables (screw speed, throughput and liquid to solid (L/S) ratio) of a continuous twin screw wet granulation (TSWG) was investigated using a central composite face-centered (CCF) experimental design method. Regression models were developed to predict the process responses (motor torque, granule residence time), granule properties (size distribution, volume average diameter, yield, relative width, flowability) and tablet properties (tensile strength). The effects of the three key process variables were analyzed via contour and interaction plots. The experimental results have demonstrated that all the process responses, granule properties and tablet properties are influenced by changing the screw speed, throughput and L/S ratio. The TSWG process was optimized to produce granules with specific volume average diameter of 150μm and the yield of 95% based on the developed regression models. A design space (DS) was built based on volume average granule diameter between 90 and 200μm and the granule yield larger than 75% with a failure probability analysis using Monte Carlo simulations. Validation experiments successfully validated the robustness and accuracy of the DS generated using the CCF experimental design in optimizing a continuous TSWG process.
在本研究中,采用中心复合表面设计(CCF)实验设计方法,研究了连续双螺杆湿法制粒(TSWG)关键工艺变量(螺杆转速、产量和液固比(L/S))的影响。建立了回归模型,以预测工艺响应(电机扭矩、颗粒停留时间)、颗粒特性(粒度分布、体积平均直径、收率、相对宽度、流动性)和片剂特性(拉伸强度)。通过等高线图和交互作用图分析了三个关键工艺变量的影响。实验结果表明,改变螺杆转速、产量和L/S比会影响所有工艺响应、颗粒特性和片剂特性。基于所建立的回归模型,对TSWG工艺进行了优化,以生产特定体积平均直径为150μm且收率为95%的颗粒。利用蒙特卡罗模拟进行失效概率分析,基于体积平均颗粒直径在90至200μm之间且颗粒收率大于75%构建了设计空间(DS)。验证实验成功验证了使用CCF实验设计生成的DS在优化连续TSWG工艺方面的稳健性和准确性。