Advancing biopharmaceutical manufacturing: economic and sustainability assessment of end-to-end continuous production of monoclonal antibodies.

IF 14.3 1区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Behnam Partopour, David Pollard
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引用次数: 0

Abstract

Monoclonal antibodies (mAbs) have become essential therapeutics for treating various diseases. The robust, cost-effective, and sustainable production of mAbs is crucial due to their growing clinical and commercial demand. Advances in bioprocessing, such as improved cell lines, perfusion bioreactors, multicolumn chromatography, and automation, can significantly increase productivity, making treatments more accessible. Streamlining the production process also aligns with environmental sustainability by reducing waste and energy consumption. This study quantifies the economic and environmental impacts of incorporating recent advances into end-to-end continuous bioprocessing of mAbs. The results demonstrate that, compared with an optimized best-in-class fed-batch process (with 15 g/l titer and multicolumn chromatography), continuous manufacturing can reduce the total annual production costs, facility footprint, plastic waste, and CO2 emissions by up to 23%, 51%, 57%, and 54%, respectively, in a multiproduct facility producing clinical and commercial lots. Additionally, uncertainty analysis indicates that these gains are even more substantial under demand fluctuations.

推进生物制药生产:单克隆抗体端到端连续生产的经济性和可持续性评估。
单克隆抗体(mAbs)已成为治疗各种疾病的基本疗法。由于 mAbs 的临床和商业需求不断增长,因此稳健、具有成本效益和可持续的生产至关重要。生物处理技术的进步,如改良细胞系、灌流生物反应器、多柱色谱法和自动化,可显著提高生产率,使治疗更容易获得。简化生产流程还能减少废物和能源消耗,从而实现环境的可持续发展。本研究量化了将最新进展融入 mAbs 端到端连续生物处理过程对经济和环境的影响。结果表明,与经过优化的同类最佳喂料批次工艺(15 克/升滴度和多柱色谱法)相比,在生产临床和商业批次产品的多产品工厂中,连续生产可将年总生产成本、设施占地面积、塑料废弃物和二氧化碳排放量分别降低 23%、51%、57% 和 54%。此外,不确定性分析表明,在需求波动的情况下,这些收益甚至更为可观。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Trends in biotechnology
Trends in biotechnology 工程技术-生物工程与应用微生物
CiteScore
28.60
自引率
1.20%
发文量
198
审稿时长
1 months
期刊介绍: Trends in Biotechnology publishes reviews and perspectives on the applied biological sciences, focusing on useful science applied to, derived from, or inspired by living systems. The major themes that TIBTECH is interested in include: Bioprocessing (biochemical engineering, applied enzymology, industrial biotechnology, biofuels, metabolic engineering) Omics (genome editing, single-cell technologies, bioinformatics, synthetic biology) Materials and devices (bionanotechnology, biomaterials, diagnostics/imaging/detection, soft robotics, biosensors/bioelectronics) Therapeutics (biofabrication, stem cells, tissue engineering and regenerative medicine, antibodies and other protein drugs, drug delivery) Agroenvironment (environmental engineering, bioremediation, genetically modified crops, sustainable development).
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