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Easy to use and reliable technique for online dissolved oxygen tension measurement in shake flasks using infrared fluorescent oxygen-sensitive nanoparticles

机译:易于使用且可靠的技术,可使用红外荧光光谱对氧敏感的纳米颗粒在线测量摇瓶中的溶解氧张力

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Background Despite the progressive miniaturization of bioreactors for screening purposes, shake flasks are still widespread in biotechnological laboratories and industry as cultivation vessels. Shake flasks are often applied as the first or second step in applications such as strain screening or media optimization. Thus, there are ongoing efforts to develop online measurement techniques for shake flasks, to gain as much information as possible about the cultured microbial system. Since dissolved oxygen tension (DOT) is a key experimental parameter, its accurate determination during the course of experiment is critical. Some of the available DOT measurement techniques can lead to erroneous measurements or are very difficult to handle. A reliable and easy to use DOT measurement system, based on suspended oxygen-sensitive nanoparticles, is presented in this work. Results In a cultivation of Kluyveromyces lactis , a new DOT measurement technique via suspended oxygen-sensitive nanoparticles was compared with the conventional DOT measurement via fixed sensor spots. These experiments revealed the main disadvantage of applying sensor spots. With further cultivations of Escherichia coli and Hansenula polymorpha, the new measurement technique was successfully validated. In combination with a RAMOS device, kLa values were determined during the presented cultivations. The determined kLa values are in good agreement with a correlation recently found in the literature. Conclusions The presented DOT measurement technique via suspended oxygen-sensitive nanoparticles in shake flasks turned out to be easy to use, robust and reliable under all applied combinations of shaking frequencies and filling volumes. Its applicability as an online monitoring system for cultivations was shown by means of four examples. Additionally, in combination with a RAMOS device, the possibility of experimental kLa determination was successfully demonstrated.
机译:背景技术尽管出于筛选目的生物反应器逐渐小型化,但摇瓶仍在生物技术实验室和工业中作为培养容器而广泛使用。摇瓶通常是应变筛选或培养基优化等应用中的第一步或第二步。因此,正在进行开发用于摇瓶的在线测量技术的努力,以获取关于培养的微生物系统的尽可能多的信息。由于溶解氧张力(DOT)是关键的实验参数,因此在实验过程中对其的准确测定至关重要。一些可用的DOT测量技术可能会导致错误的测量或很难处理。在这项工作中,提出了一种基于悬浮氧敏感纳米粒子的可靠且易于使用的DOT测量系统。结果在乳酸克鲁维酵母的培养中,将通过悬浮的对氧敏感的纳米颗粒的新DOT测量技术与通过固定传感器点的常规DOT测量进行了比较。这些实验揭示了施加传感器斑点的主要缺点。通过进一步培养大肠杆菌和多形汉逊酵母,成功地验证了新的测量技术。结合RAMOS设备,在提出的培养过程中确定k L a值。所确定的k L 值与文献中最近发现的相关性非常一致。结论提出的通过悬浮在摇瓶中的对氧敏感的纳米颗粒的DOT测量技术在所有应用的摇动频率和填充量组合下均易于使用,坚固且可靠。通过四个例子说明了其作为栽培在线监测系统的适用性。此外,结合RAMOS设备,成功证明了进行实验性k L 测定的可能性。

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