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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Adaptation of the 'Dynamic Method' for measuring the specific respiration rate in oxygen transfer systems through diffusion membrane
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Adaptation of the 'Dynamic Method' for measuring the specific respiration rate in oxygen transfer systems through diffusion membrane

机译:修改“动态方法”以通过扩散膜测量氧气传输系统中的比呼吸率

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摘要

Monitoring the specific respiration rate (Q_(O2)) is a valuable tool to evaluate cell growth and physiology. However, for low Q_(O2) values the accuracy may depend on the measurement methodology, as it is the case in animal cell culture. The widely used "Dynamic Method" imposes serious difficulties concerning oxygen transfer cancellation, especially through membrane oxygenation. This paper presents an improved procedure to this method, through an automated control of the gas inlet composition that can minimize the residual oxygen, transfer driving force during the Q_(O2) measurement phase. The improved technique was applied to animal cell cultivation, particularly three recombinant S2 (Drosophila melanogaster) insect cell lines grown in a membrane aeration bioreactor. The average measurements of the proposed method reached 98% of stationary liquid phase balance method, taken as a reference, compared to 21% when the traditional method was used. Furthermore, this methodology does not require knowledge of the volumetric transfer coefficient kLa, which may vary during growth.
机译:监测特定呼吸频率(Q_(O2))是评估细胞生长和生理的宝贵工具。但是,对于低Q_(O2)值,准确性可能取决于测量方法,就像动物细胞培养中的情况一样。广泛使用的“动态方法”给消除氧转移特别是通过膜氧合带来了严重的困难。本文通过对进气口成分的自动控制,可以最大限度地减少残留氧气,在Q_(O2)测量阶段传递驱动力,为该方法提供了一种改进的方法。改进后的技术应用于动物细胞培养,特别是在膜曝气生物反应器中生长的三种重组S2(Drosophila melanogaster)昆虫细胞系。该方法的平均测量值达到了固定液相平衡法的98%(作为参考),而使用传统方法时为21%。此外,该方法不需要知识的体积传递系数kLa,其在生长过程中可能会发生变化。

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