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首页> 外文期刊>Biotechnology Progress >Cell Separator Operation within Temperature Ranges To Minimize Effects on Chinese Hamster Ovary Cell Perfusion Culture
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Cell Separator Operation within Temperature Ranges To Minimize Effects on Chinese Hamster Ovary Cell Perfusion Culture

机译:在温度范围内进行细胞分离器操作,以最小化对中国仓鼠卵巢细胞灌注培养的影响

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摘要

A cell retention device that provides reliable high-separation efficiency with minimal negative effects on the cell culture is essential for robust perfusion culture processes.External separation devices generally expose cells to periodic variations in temperature,most commonly temperatures below 37 °C,while the cells are outside the bioreactor.To examine this phenomenon,aliquots of ~5% of a CHO cell culture were exposed to 60 s cyclic variations of temperature simulating an acoustic separator environment.It was found that,for average exposure temperatures between 31.5 and 38.5 °C,there were no significant impacts on the rates of growth,glucose consumption,or t-PA production,defining an acceptable range of operating temperatures.These results were subsequently confirmed in perfusion culture experiments for average exposure temperatures between 31.6 and 38.1 °C.A 2~(5-1)central composite factorial design experiment was then performed to systematically evaluate the effects of different operating variables on the inlet and outlet temperatures of a 10L acoustic separator.The power input,ambient temperature,as well as the perfusion and recycle flow rates significantly influenced the temperature,while the cell concentration did not.An empirical model was developed that predicted the temperature changes between the inlet and the outlet of the acoustic separator within ±0.5 °C.A series of perfusion experiments determined the ranges of the significant operational settings that maintained the acoustic separator inlet and outlet temperatures within the acceptable range.For example,these objectives were always met by using the manufacturer-recommended operational settings as long as the recirculation flow rate was maintained above 15 L day~(-1) and the ambient temperature was near 22 °C.
机译:提供可靠的高分离效率且对细胞培养产生最小负面影响的细胞保留装置对于强大的灌注培养过程至关重要。外部分离装置通常使细胞处于周期性的温度变化中,最常见的是温度低于37°C,而细胞为了检查这种现象,将约5%CHO细胞培养物的等分试样暴露于60 s的温度周期变化中,以模拟声学分离器环境。发现,平均暴露温度为31.5至38.5°C ,对生长速率,葡萄糖消耗或t-PA产量没有显着影响,定义了可接受的工作温度范围。这些结果随后在灌注培养实验中得到了证实,平均暴露温度为31.6至38.1°CA 2〜然后进行(5-1)中央复合因子设计实验以系统地评估不同o的影响功率变量,10 L声分离器的入口和出口温度。功率输入,环境温度以及灌注和循环流速显着影响温度,而细胞浓度没有影响。建立了经验模型来预测声学分离器的入口和出口之间的温度变化在±0.5°CA以内,一系列的灌注实验确定了重要的操作设置范围,这些条件将声学分离器的入口和出口温度保持在可接受的范围内。例如,这些目标始终是只要再循环流量保持在15 L day〜(-1)以上并且环境温度接近22°C,就可以使用制造商建议的操作设置满足要求。

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