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单排在线生物量探头通过电容检测 CHO 细胞生长,通过电导率检测生物反应器中的细菌污染。

Single in-line biomass probe detects CHO cell growth by capacitance and bacterial contamination by conductivity in bioreactor.

机构信息

Department of Chemical Engineering, University of Massachusetts, Lowell, Lowell, Massachusetts, USA.

Division of Product Quality Research, Office of Testing and Research, Office of Pharmaceutical Quality, Center for Drug Evaluation and Research, Food and Drug Administration, Silver Spring, Maryland, USA.

出版信息

Biotechnol J. 2021 Dec;16(12):e2100126. doi: 10.1002/biot.202100126. Epub 2021 Oct 13.

Abstract

BACKGROUND

Real time process data facilitates timely decisions, enables better process control, and can increase quality assurance. Biological drugs (mol. Wt. ≥ 40 kDa) are manufactured using mammalian cells such as Chinese hamster ovary (CHO) cells in bioreactors and have significant risks of contamination during processing. In such processes, in-line monitoring of biomass can provide real-time cell growth profiles and indications of bioreactor health.

METHODS

An in-line conductivity/capacitance probe (Aber Instruments, Aberystwyth, UK) for monitoring CHO cell growth during fed batch cultures for producing an IgG1 monoclonal antibody was employed. Cell growth was measured in real-time using the capacitance probe (pF cm ) while being compared with off-line measurements using a metabolic analyzer (Nova Biomedical, Waltham, MA, USA). Conductivity measurements (mS cm ) detected variations in the solute concentrations in the bioreactor due to nutrient feed, bicarbonate buffer, and cellular metabolism by-products.

RESULTS AND CONCLUSION

Abnormal increases in conductivity were found to consistently correspond to bacterial contamination, which was confirmed by orthogonal methods. The contaminated bioreactor runs exhibited sharp increases in conductivity rates hours before dissolved oxygen levels precipitously decreased due to bacterial growth. It is proposed that in-line measurement of conductivity could be employed for early detection of bacterial contaminations. The probe may be adopted in pharmaceutical aseptic aqueous liquid handling processes.

摘要

背景

实时过程数据有助于做出及时决策,实现更好的过程控制,并能提高质量保证。生物药物(分子量≥40kDa)采用哺乳动物细胞(如中国仓鼠卵巢(CHO)细胞)在生物反应器中制造,在加工过程中有显著的污染风险。在这样的过程中,在线监测生物量可以提供实时的细胞生长曲线和生物反应器健康状况的指示。

方法

采用在线电导率/电容探头(Aber 仪器公司,阿伯里斯特威斯,英国)监测生产 IgG1 单克隆抗体的补料分批培养过程中的 CHO 细胞生长情况。使用电容探头(pF cm)实时测量细胞生长情况,并与使用代谢分析仪(新百美顿,沃尔瑟姆,马萨诸塞州,美国)的离线测量进行比较。电导率测量(mS cm)检测到由于营养物进料、碳酸氢盐缓冲液和细胞代谢副产物而导致生物反应器中溶质浓度的变化。

结果与结论

发现电导率的异常增加始终与细菌污染一致,这通过正交方法得到了证实。受污染的生物反应器运行在由于细菌生长导致溶解氧水平急剧下降之前几个小时,电导率率就急剧上升。据推测,在线电导率测量可用于早期检测细菌污染。探头可用于制药无菌水相液体处理过程。

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