生物过程
生物反应器
工艺工程
生物制药
连续生产
批处理
过程(计算)
设计质量
吞吐量
过程分析技术
放大
计算机科学
生产力
生化工程
生物技术
工程类
化学
化学工程
下游(制造业)
运营管理
有机化学
经济
程序设计语言
宏观经济学
物理
无线
操作系统
生物
电信
经典力学
作者
Lindsay Arnold,Kenneth Lee,Joanna Rucker‐Pezzini,Jeong H. Lee
标识
DOI:10.1002/biot.201800061
摘要
The changing landscape of the biopharmaceutical market is driving a paradigm shift toward continuous manufacturing. To date, integrated continuous bioprocessing has not been realized as enabling technologies are nascent. In this work, a fully integrated continuous process is successfully demonstrated from pilot scale bioreactor to drug substance. Comparable product quality is observed between the continuous process and a 500 L fed‐batch conventional process. The continuous process generated material at a rate of 1 kg of purified mAb every 4 days, achieving a 4.6‐fold increase in productivity compared to the fed‐batch process A plant throughput analysis using BioSolve software shows that a fed‐batch facility with 4 × 12 500 L stainless steel bioreactors and purification train of the corresponding scale can be replaced by a continuous facility consisting of 5 × 2000 L single use bioreactors and smaller purification train, with a cost reduction of 15%.
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