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使用三重一次性非侵入式光学传感器实时监测摇瓶发酵和废气。

Real-time monitoring of shake flask fermentation and off gas using triple disposable noninvasive optical sensors.

机构信息

Center for Advanced Sensor Technology, Department of Chemical, Biochemical and Environmental Engineering, University of Maryland Baltimore County, Baltimore, MD 21250, USA.

出版信息

Biotechnol Prog. 2012 May-Jun;28(3):872-7. doi: 10.1002/btpr.1528. Epub 2012 Feb 28.

Abstract

Bioprocess development is a data-driven process requiring a large number of experiments to be conducted under varying conditions. Small-scale upstream bioprocess development is often performed in shake flasks because they are inexpensive and can be operated in parallel. However, shake flasks are often not equipped to accurately monitor critical process parameters such as pH, dissolved oxygen, and CO2 concentrations. Therefore, there is no definitive information on oxygen supply of growing cells, CO2 formation, and pH changes. Here we describe several shake flask fermentations where all three parameters are monitored by disposable noninvasive optical sensors. The sensitive element of these sensors is a thin, luminescent patch affixed inside the flask. Small electronic devices for excitation and fluorescence detection are positioned outside the shake flask for noninvasive monitoring. By measuring the process parameters throughout the course of the E. coli fermentations, we obtain information that is not routinely available in shake flask fermentations. For example, for cultures with only a few millimeters liquid depth, oxygen limitation can occur at relatively low agitation speeds. Under certain conditions oscillations in dissolved oxygen can occur. An increase in shaker speed and a decrease in culture volume can increase the oxygen availability and reduce the duration of oxygen limitation.

摘要

生物工艺开发是一个数据驱动的过程,需要在不同条件下进行大量的实验。小规模的上游生物工艺开发通常在摇瓶中进行,因为它们价格低廉且可以并行操作。然而,摇瓶通常无法准确监测关键工艺参数,如 pH 值、溶解氧和 CO2 浓度。因此,对于生长细胞的供氧、CO2 形成和 pH 值变化,没有明确的信息。在这里,我们描述了几个通过一次性非侵入式光学传感器监测所有三个参数的摇瓶发酵。这些传感器的敏感元件是贴在瓶内的薄而发光的薄片。用于激发和荧光检测的小型电子设备位于摇瓶外部,进行非侵入式监测。通过在大肠杆菌发酵过程中测量工艺参数,我们获得了在摇瓶发酵中通常无法获得的信息。例如,对于只有几毫米液体深度的培养物,在相对较低的搅拌速度下可能会发生氧气限制。在某些条件下,溶解氧可能会出现波动。增加摇床速度和减少培养物体积可以增加氧气供应并减少氧气限制的持续时间。

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