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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Multi-stage and multi-objective decision-support tool for biopharmaceutical drug product manufacturing: Equipment technology evaluation
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Multi-stage and multi-objective decision-support tool for biopharmaceutical drug product manufacturing: Equipment technology evaluation

机译:用于生物制药药品制造的多级和多目标决策支持工具:设备技术评估

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摘要

The emergence of single use technology (SUT) for equipment promises to be a revolutionary change in biopharmaceutical production. SUT equipment reduces non-value adding working time and provides operational flexibility. However, there are increased process risks such as possible contamination with leachable compounds or supply dependencies, as well as required redesign efforts. This work provides a multi-stage approach for decision-support for optimal equipment technology applied in a case study for a sterile filling line. Three design stages are identified. The first two stages explore the design landscape using the economic performance to show the general trends of favorable regions for equipment technology and the sensitivity to process parameters according to their relative importance. The last stage is more detailed but incorporates additional assessment indicators such as environmental impact and risks of process downtime. From an economic perspective SUT options are more favorable for short term and small-scale production, such as the case for preparing drugs for clinical trials. Traditional stainless-steel options had a significant economic advantage at large scale and long term production. The ranking of favorable options varied as other assessment factors, namely life-cycle CO2 emissions as well as risks in contamination and supply delay, were included in the analysis. The proposed methodology offers an agile decision-making tool, accounts for uncertainties across various design phases, and offers a systematic exploration of the available design landscape. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:单一使用技术的出现(SUT)为设备承诺成为生物制药生产的革命性变化。 SUT设备可减少非值添加工作时间并提供操作灵活性。然而,有更多的过程风险,例如可能与可浸出的化合物或供应依赖性的可能污染,以及所需的重新设计努力。这项工作为在适用于无菌灌装线的案例研究中应用的最佳设备技术的决策支持提供了多级方法。确定了三个设计阶段。前两个阶段使用经济绩效探索设计景观,以展示设备技术有利地区的一般趋势以及根据其相对重要性来处理参数的敏感性。最后阶段更详细,但含有其他评估指标,如环境影响和流程停机风险。从经济角度来看,SUT选项对短期和小规模生产更有利,例如为临床试验制备药物的案例。传统的不锈钢选择在大规模和长期生产中具有重要的经济优势。在分析中,包括其他评估因素,即生命周期二氧化碳排放以及污染和供应延迟的风险等级各种各样的选择。该拟议的方法提供了一个敏捷的决策工具,占各种设计阶段的不确定性,并提供了对可用设计景观的系统探索。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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