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Stochastic Simulation Model Development for Biopharmaceutical Production Process Risk Analysis and Stability Control

机译:生物制药生产过程风险分析与稳定性控制的随机模拟模型开发

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In this paper, we develop a stochastic simulation model for biomanufacturing risk analysis by focusing on the production process from raw materials to finished drug substance. By exploring biotechnology domain knowledge, we model how the properties or attributes of each batch dynamically evolve along the production process. We consider main sources of uncertainty leading to batch-to-batch variation, such as raw material biomass, cell culture, and target protein purification. The proposed simulation model allows us to incorporate the underlying physical chemical interactions and also the no-wait constraint in the purification process. It can be used to facilitate biomanufacturing risk management and guide coherent operational decision making (i.e., production scheduling and quality control) so that the stability of bio-drug quality can be improved while efficiently utilizing the resources and speeding up the time to market.
机译:在本文中,我们将重点放在从原材料到最终原料药的生产过程中,以开发用于生物制造风险分析的随机仿真模型。通过探索生物技术领域的知识,我们对每个批次的特性或属性在生产过程中如何动态演化进行建模。我们考虑导致批次间差异的不确定性的主要来源,例如原材料生物量,细胞培养和目标蛋白质纯化。所提出的仿真模型使我们能够在纯化过程中纳入潜在的物理化学相互作用以及无等待约束。它可用于促进生物制造风险管理并指导一致的操作决策(即生产计划和质量控制),从而可在有效利用资源并加快上市时间的同时提高生物药品质量的稳定性。

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