Gorenflo Volker M, Smith Laura, Dedinsky Bob, Persson Bo, Piret James M
Biotechnology Laboratory, University of British Columbia, # 237-6174 University Boulevard, Vancouver, British Columbia, Canada, V6T 1Z3.
Biotechnol Bioeng. 2002 Nov 20;80(4):438-44. doi: 10.1002/bit.10386.
Acoustic cell retention devices have provided a practical alternative for up to 50 L/day perfusion cultures but further scale-up has been limited. A novel temperature-controlled and larger-scale acoustic separator was evaluated at up to 400 L/day for a 10(7) CHO cell/mL perfusion culture using a 100-L bioreactor that produced up to 34 g/day recombinant protein. The increased active volume of this scaled-up separator was divided into four parallel compartments for improved fluid dynamics. Operational settings of the acoustic separator were optimized and the limits of robust operations explored. The performance was not influenced over wide ranges of duty cycle stop and run times. The maximum performance of 96% separation efficiency at 200 L/day was obtained by setting the separator temperature to 35.1 degrees C, the recirculation rate to three times the harvest rate, and the power to 90 W. While there was no detectable effect on culture viability, viable cells were selectively retained, especially at 50 L/day, where there was a 5-fold higher nonviable washout efficiency. Overall, the new temperature-controlled and scaled-up separator design performed reliably in a way similar to smaller-scale acoustic separators. These results provide strong support for the feasibility of much greater scale-up of acoustic separations.
声学细胞截留装置为高达50升/天的灌注培养提供了一种实用的替代方案,但进一步扩大规模受到了限制。使用一个可产生高达34克/天重组蛋白的100升生物反应器,对一种新型的温度控制且更大规模的声学分离器进行了评估,用于10⁷个中国仓鼠卵巢(CHO)细胞/毫升的灌注培养,流量高达400升/天。这种扩大规模的分离器增加的有效体积被分成四个平行隔室,以改善流体动力学。对声学分离器的操作设置进行了优化,并探索了稳健操作的极限。在宽范围的占空比停止和运行时间内,性能不受影响。通过将分离器温度设置为35.1摄氏度、再循环速率设置为收获速率的三倍以及功率设置为90瓦,在200升/天的流量下获得了96%的最大分离效率。虽然对培养活力没有可检测到的影响,但活细胞被选择性截留,尤其是在50升/天的流量下,此时非活细胞的洗脱效率高出5倍。总体而言,新的温度控制且扩大规模的分离器设计以类似于较小规模声学分离器的方式可靠运行。这些结果为声学分离进一步扩大规模的可行性提供了有力支持。