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摇瓶中溶解氧定量光学传感器的表征与应用

Characterization and application of an optical sensor for quantification of dissolved O2 in shake-flasks.

作者信息

Wittmann Christoph, Kim Hyung Min, John Gernot, Heinzle Elmar

机构信息

Biochemical Engineering, Saarland University Am Stadtwald, 66123 Saarbrücken, Germany.

出版信息

Biotechnol Lett. 2003 Mar;25(5):377-80. doi: 10.1023/a:1022402212537.

Abstract

On-line measurement of dissolved O2 in shake-flasks was realized via immobilized sensor spots containing a fluorophore with an O2-dependent luminescent decay time. An unaffected sensor signal during 80 autoclaving cycles suggests multi-usage of sensor equipped shake-flasks. The sensor had a response time of 6 s. Quantification of gas-liquid mass transfer revealed maximum kLa values of 150 h(-1), from which maximum O2 transfer capacity of 33 mM h(-1) was calculated. Liquid volume and shaking frequency have a strong influence on kLa. Exemplified by cultivations of Corynebacterium glutamicum the importance of shaking rate for O2 supply of bacterial cultures is shown. Sampling of microbial cultures with intermittent shaking of a few minutes can cause O2 limitation. Based on the results of this work a simple and straightforward tool is now available for accurate O2 sensing in shake-flasks, which are widely used in microbial cultivations.

摘要

通过含有具有氧依赖发光衰减时间的荧光团的固定化传感器点,实现了摇瓶中溶解氧的在线测量。在80次高压灭菌循环中传感器信号未受影响,表明配备传感器的摇瓶可多次使用。该传感器的响应时间为6秒。气液传质的定量分析显示最大体积传质系数(kLa)值为150 h⁻¹,据此计算出最大氧气传递能力为33 mM h⁻¹。液体体积和振荡频率对kLa有很大影响。以谷氨酸棒杆菌的培养为例,显示了振荡速率对细菌培养物氧气供应的重要性。在几分钟的间歇振荡下对微生物培养物进行采样会导致氧气限制。基于这项工作的结果,现在有了一种简单直接的工具,可用于在广泛用于微生物培养的摇瓶中进行精确的氧气传感。

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