Singh Ravendra, Sahay Abhishek, Karry Krizia M, Muzzio Fernando, Ierapetritou Marianthi, Ramachandran Rohit
Engineering Research Center for Structured Organic Particulate Systems (ERC-SOPS), Department of Chemical and Biochemical Engineering, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USA.
Engineering Research Center for Structured Organic Particulate Systems (ERC-SOPS), Department of Chemical and Biochemical Engineering, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USA.
Int J Pharm. 2014 Oct 1;473(1-2):38-54. doi: 10.1016/j.ijpharm.2014.06.045. Epub 2014 Jun 27.
It is desirable for a pharmaceutical final dosage form to be manufactured through a quality by design (QbD)-based approach rather than a quality by testing (QbT) approach. An automatic feedback control system coupled with PAT tools that is part of the QbD paradigm shift, has the potential to ensure that the pre-defined end product quality attributes are met in a time and cost efficient manner. In this work, an advanced hybrid MPC-PID control architecture coupled with real time inline/online monitoring tools and principal components analysis (PCA) based additional supervisory control layer has been proposed for a continuous direct compaction tablet manufacturing process. The advantages of both MPC and PID have been utilized in a hybrid scheme. The control hardware and software integration and implementation of the control system has been demonstrated using feeders and blending unit operation of a continuous tablet manufacturing pilot plant and an NIR based PAT tool. The advanced hybrid MPC-PID control scheme leads to enhanced control loop performance of the critical quality attributes in comparison to a regulatory (e.g. PID) control scheme indicating its potential to improve pharmaceutical product quality.
药品最终剂型采用基于质量源于设计(QbD)的方法而非质量源于检验(QbT)的方法来制造是可取的。作为QbD范式转变一部分的、与过程分析技术(PAT)工具相结合的自动反馈控制系统,有潜力确保以高效省时且经济的方式满足预定义的最终产品质量属性。在这项工作中,针对连续直接压片制造工艺,提出了一种先进的混合模型预测控制-比例积分微分(MPC-PID)控制架构,该架构与实时在线/在线监测工具以及基于主成分分析(PCA)的附加监控层相结合。在混合方案中利用了MPC和PID两者的优点。使用连续片剂制造中试工厂的进料器和混合单元操作以及基于近红外(NIR)的PAT工具,演示了控制系统的控制硬件和软件集成与实施。与常规(如PID)控制方案相比,先进的混合MPC-PID控制方案可提高关键质量属性的控制回路性能,表明其具有提高药品质量的潜力。