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Quantitative assessment of environmental impact of biologics manufacturing using process mass intensity analysis

机译:使用过程质量强度分析的生物学制造环境影响的定量评估

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摘要

Process mass intensity (PMI) is a benchmarking metric to evaluate the efficiency of a manufacturing process, which is indicative of the environmental impact of the process. Although this metric is commonly applied for small molecule manufacturing processes, it is less commonly applied to biologics. In this study, an Excel based tool developed by the ACS GCI Pharmaceutical Roundtable was used to calculate PMI of different manufacturing processes for a monoclonal antibody (mAb). For the upstream process, three different versions were compared: fed-batch, fed-batch with N-1 perfusion, and perfusion in the N-stage bioreactor. For each upstream process version, an appropriate downstream operational mode was evaluated from the following: a column chromatography process utilizing Protein A and anion exchange (AEX) resin, a Protein A column and an AEX membrane, and a three-column periodic counter-current (3C PCC) chromatography process for Protein A and an AEX membrane. The impact of these different process variations on PMI was evaluated. Of all the process inputs, water contributes about 92-94% of the overall PMI. Additionally, the upstream processes and the chromatography steps account for 32-47 and 34-54% of the overall PMI, respectively. Sensitivity analysis was performed to identify opportunities for further reducing PMI. These data indicate that a semicontinuous manufacturing process (perfusion, 3C PCC, and AEX membrane) is the most efficient process, resulting in a 23% reduction of PMI when compared with the fed batch and two-column chromatography process. Together, PMI can be used to guide the development of efficient and environmentally sustainable mAb manufacturing processes. (c) 2018 American Institute of Chemical Engineers
机译:过程质量强度(PMI)是评估制造过程的效率的基准度量,这表明该过程的环境影响。虽然该度量通常适用于小分子制造方法,但它不太普遍应用于生物学。在该研究中,通过ACS GCI药物圆桌关系开发的基于Excel的工具用于计算单克隆抗体(MAB)的不同制造方法的PMI。对于上游进程,比较了三种不同的版本:FED-批次,含有N-1灌注的批量,并在N-阶段生物反应器中灌注。对于每个上游工艺版本,通过以下方式评估适当的下游操作模式:利用蛋白质A和阴离子交换(AEX)树脂,蛋白质A柱和AEX膜的柱色谱法,以及三柱周期性反电流(3C PCC)蛋白A和AEX膜的色谱法。评估了这些不同工艺变异对PMI的影响。在所有流程输入中,水占整个PMI的92-94%。另外,上游方法和色谱步骤分别占整个PMI的32-47%和34-54%。进行敏感性分析以确定进一步减少PMI的机会。这些数据表明半连续制造过程(灌注,3C PCC和AEX膜)是最有效的过程,导致与美联储分批和双柱色谱法相比,PMI的减少23%。 PMI可以用来引导高效和环境可持续的MAB制造过程的发展。 (c)2018美国化学工程研究所

著录项

  • 来源
    《Biotechnology Progress》 |2018年第6期|共8页
  • 作者单位

    Merck &

    Co Inc USA Upstream Proc Dev &

    Engn Biol Proc Dev &

    Clin Mfg 2000 Galloping Hill Rd Kenilworth NJ 07033 USA;

    Merck &

    Co Inc Environm Sustainabil COE 2000 Galloping Hill Rd Kenilworth NJ 07033 USA;

    Merck &

    Co Inc USA Upstream Proc Dev &

    Engn Biol Proc Dev &

    Clin Mfg 2000 Galloping Hill Rd Kenilworth NJ 07033 USA;

    Merck &

    Co Inc USA Downstream Proc Dev &

    Engn Biol Proc Dev &

    Clin Mfg 2000 Galloping Hill Rd Kenilworth NJ 07033 USA;

    Merck &

    Co Inc USA Downstream Proc Dev &

    Engn Biol Proc Dev &

    Clin Mfg 2000 Galloping Hill Rd Kenilworth NJ 07033 USA;

    Merck &

    Co Inc USA Downstream Proc Dev &

    Engn Biol Proc Dev &

    Clin Mfg 2000 Galloping Hill Rd Kenilworth NJ 07033 USA;

    Merck &

    Co Inc USA Downstream Proc Dev &

    Engn Biol Proc Dev &

    Clin Mfg 2000 Galloping Hill Rd Kenilworth NJ 07033 USA;

    Merck &

    Co Inc USA Upstream Proc Dev &

    Engn Biol Proc Dev &

    Clin Mfg 2000 Galloping Hill Rd Kenilworth NJ 07033 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学;
  • 关键词

    process mass intensity; manufacturing process; environmental; sustainability; mAb;

    机译:过程质量强度;制造过程;环境;可持续性;MAB;

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