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Predictive Model-Based Process Start-Up in Pharmaceutical Continuous Granulation and Drying

机译:药物连续制粒和干燥中基于预测模型的过程启动

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摘要

Continuous manufacturing (CM) is a promising strategy to achieve various benefits in the context of quality, flexibility, safety and cost in pharmaceutical production. One of the main technical challenges of CM is that the process needs to handle transient conditions such as the start-up phase before state of control operation is reached, which can potentially cause out-of-specification (OOS) material. In this context, the presented paper aims to demonstrate that suitable process control strategies during start-up of a continuous granulation and drying operation can limit or even avoid OOS material production and hence can ensure that the provided benefits of CM are not compromised by poor production yields. In detail, heat-up of the drying chamber prior the start of production can lead to thermal energy being stored inside of the stainless-steel housing, acting as an energy buffer that is known to cause over-dried granules in the first few minutes of the drying process. To compensate this issue, an automatic ramping procedure of dryer rotation speed (and hence drying time) was introduced into the plant’s process control system, which counteracts the excessive drying capacity during start-up. As a result, dry granules exiting the dryer complied with the targeted intermediate critical quality attribute loss-on-drying (LOD) from the very beginning of production.
机译:连续生产(CM)是一种有前途的策略,可以在药品生产的质量,灵活性,安全性和成本方面实现各种收益。 CM的主要技术挑战之一是,该过程需要处理瞬态条件,例如在达到控制操作状态之前的启动阶段,这有可能导致规格不合格(OOS)材料的出现。在这种情况下,本文旨在证明在连续造粒和干燥操作的启动过程中采用适当的过程控制策略可以限制甚至避免OOS材料的生产,因此可以确保不因生产不良而损害CM提供的益处。产量。详细地讲,在开始生产之前对干燥室进行加热会导致将热能存储在不锈钢外壳内,作为能量缓冲剂,已知该能量缓冲剂会在干燥后的最初几分钟内导致颗粒过度干燥干燥过程。为了解决这个问题,在工厂的过程控制系统中引入了干燥机转速(以及干燥时间)的自动渐变程序,以抵消启动过程中过大的干燥能力。结果,从生产开始,从干燥机出来的干燥颗粒就符合目标的中间临界质量属性,即干燥失重(LOD)。

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