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原位传感器技术在现代生物过程监测中的应用。

In situ sensor techniques in modern bioprocess monitoring.

机构信息

Institute for Technical Chemistry, Gottfried Wilhelm Leibniz University of Hanover, Callinstraße 5, 30167, Hanover, Germany.

出版信息

Appl Microbiol Biotechnol. 2011 Sep;91(6):1493-505. doi: 10.1007/s00253-011-3470-5. Epub 2011 Jul 23.

Abstract

New reactor concepts as multi-parallel screening systems or disposable bioreactor systems for decentralized and reproducible production increase the need for new and easy applicable sensor technologies to access data for process control. These sophisticated reactor systems require sensors to work with the lowest sampling volumes or, even better, to measure directly in situ, but in situ sensors are directly incorporated into a reactor or fermenter within the sterility barrier and have therefore to stand the sterilization procedures. Consequently, these in situ sensor technologies should enable the measurement of multi-analytes simultaneously online and in real-time at a low price for the robust sensing element. Current research therefore focuses on the implementation of noninvasive spectroscopic and optical technologies, and tries to employ them through fiber optics attached to disposable sensing connectors. Spectroscopic methods reach from ultraviolet to infrared and further comprising fluorescence and Raman spectroscopy. Also, optic techniques like microscopy are adapted for the direct use in bioreactor systems (Ulber et al. in Anal Bioanal Chem 376:342-348, 2003) as well as various electrochemical methods (Joo and Brown in Chem Rev 108:638-651, 2008). This review shows the variety of modern in situ sensing principles in bioprocess monitoring with emphasis on spectroscopic and optical techniques and the progress in the adaption to latest reactor concepts.

摘要

新的反应堆概念,如多平行筛选系统或一次性生物反应器系统,用于分散和可重复的生产,增加了对新型易用传感器技术的需求,以获取用于过程控制的数据。这些复杂的反应堆系统需要传感器以最小的采样量工作,或者更好的是直接进行原位测量,但原位传感器直接集成在无菌屏障内的反应堆或发酵罐中,因此必须经受住灭菌程序。因此,这些原位传感器技术应该能够以低廉的价格实时在线同时测量多种分析物,并且具有坚固的传感元件。因此,当前的研究重点是实施非侵入性光谱和光学技术,并尝试通过连接到一次性传感器的光纤来利用它们。光谱方法的范围从紫外线到红外线,进一步包括荧光和拉曼光谱。此外,像显微镜这样的光学技术也被适当地用于直接在生物反应器系统中使用(Ulber 等人,Anal Bioanal Chem 376:342-348, 2003)以及各种电化学方法(Joo 和 Brown,Chem Rev 108:638-651, 2008)。这篇综述展示了生物过程监测中现代原位传感原理的多样性,重点介绍了光谱和光学技术以及适应最新反应堆概念的进展。

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