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重组杆状病毒感染和未感染的昆虫细胞生物反应器培养物中呼吸的在线监测

On-line monitoring of respiration in recombinant-baculovirus infected and uninfected insect cell bioreactor cultures.

作者信息

Kamen A A, Bédard C, Tom R, Perret S, Jardin B

机构信息

Animal Cell Engineering Group, Biotechnology Research Institute, National Research Council Canada, 6100 Royalmount Avenue, Montréal, Québec, Canada.

出版信息

Biotechnol Bioeng. 1996 Apr 5;50(1):36-48. doi: 10.1002/(SICI)1097-0290(19960405)50:1<36::AID-BIT5>3.0.CO;2-2.

Abstract

Respiration rates in Spodoptera frugiperda (Sf-9) cell bioreactor cultures were successfully measured on-line using two methods: The O(2) uptake rate (OUR) was determined using gas phase pO(2) values imposed by a dissolved oxygen controller and the CO(2) evolution rate (CER) was measured using an infrared detector. The measurement methods were accurate, reliable, and relatively inexpensive. The CER was routinely determined in bioreactor cultures used for the production of several recombinant proteins. Simple linear relationships between viable cell densities and both OUR and CER in exponentially growing cultures were used to predict viable cell density. Respiration measurements were also used to follow the progress of baculoviral infections in Sf-9 cultures. Infection led to increases in volumetric and per-cell respiration rates. The relationships between respiration and several other culture parameters, including viable cell density, cell protein, cell volume, glucose consumption, lactate production, viral titer, and recombinant beta-galactosidase accumulation, were examined. The extent of the increase in CER following infection and the time postinfection at which maximum CER was attained were negatively correlated with the multiplicity of infection (MOI) at multiplicities below the level required to infect all the cells in a culture. Delays in the respiration peak related to the MOI employed were correlated with delays in the peak in recombinant protein accumulation. DO levels in the range 5-100% did not exert any major effects on viable cell densities, CER, or product titer in cultures infected with a baculovirus expressing recombinant beta-galactosidase.

摘要

利用两种方法成功在线测量了草地贪夜蛾(Sf-9)细胞生物反应器培养物中的呼吸速率:使用溶解氧控制器设定的气相pO₂值测定氧气摄取速率(OUR),并使用红外探测器测量二氧化碳释放速率(CER)。这些测量方法准确、可靠且成本相对较低。在用于生产几种重组蛋白的生物反应器培养物中常规测定CER。利用指数生长培养物中活细胞密度与OUR和CER之间的简单线性关系来预测活细胞密度。呼吸测量还用于跟踪Sf-9培养物中杆状病毒感染的进程。感染导致体积呼吸速率和每细胞呼吸速率增加。研究了呼吸与其他几个培养参数之间的关系,包括活细胞密度、细胞蛋白、细胞体积、葡萄糖消耗、乳酸产生、病毒滴度和重组β-半乳糖苷酶积累。在感染复数低于感染培养物中所有细胞所需水平时,感染后CER增加的程度以及达到最大CER的感染后时间与感染复数(MOI)呈负相关。与所用MOI相关的呼吸峰值延迟与重组蛋白积累峰值的延迟相关。在感染表达重组β-半乳糖苷酶的杆状病毒的培养物中,5-100%范围内的溶解氧(DO)水平对活细胞密度、CER或产物滴度没有任何重大影响。

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