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自动化电化学葡萄糖生物传感器平台作为在线发酵监测的有效工具:新型应用方法与见解

Automated Electrochemical Glucose Biosensor Platform as an Efficient Tool Toward On-Line Fermentation Monitoring: Novel Application Approaches and Insights.

作者信息

Pontius Katrin, Semenova Daria, Silina Yuliya E, Gernaey Krist V, Junicke Helena

机构信息

Department of Chemical and Biochemical Engineering, Process and Systems Engineering Center (PROSYS), Technical University of Denmark, Kongens Lyngby, Denmark.

Institute of Biochemistry, Saarland University, Saarbrücken, Germany.

出版信息

Front Bioeng Biotechnol. 2020 May 21;8:436. doi: 10.3389/fbioe.2020.00436. eCollection 2020.

Abstract

Monitoring and control of fermentation processes remain a crucial challenge for both laboratory and industrial-scale experiments. Reliable identification and quantification of the key process parameters in on-line mode allow operation of the fermentation at optimal reactor efficiency, maximizing productivity while minimizing waste. However, state-of-the-art fermentation on-line monitoring is still limited to a number of standard measurements such as pH, temperature and dissolved oxygen, as well as off-gas analysis as an advanced possibility. Despite the availability of commercial biosensor-based platforms that have been established for continuous monitoring of glucose and various biological variables within healthcare, on-line glucose quantification in fermentation processes has not been implemented yet to a large degree. For the first time, this work presents a complete study of a commercial flow-through-cell with integrated electrochemical glucose biosensors (1 generation) applied in different media, and importantly, at- and on-line during a yeast fed-batch fermentation process. Remarkably, the glucose biosensor-based platform combined with the developed methodology was able to detect glucose concentrations up to 150 mM in the complex fermentation broth, on both cell-free and cell-containing samples, when not compromised by oxygen limitations. This is four to six-fold higher than previously described in the literature presenting the application of biosensors predominately toward cell-free fermentation samples. The automated biosensor platform allowed reliable glucose quantification in a significantly less resource and time (<5 min) consuming manner compared to conventional HPLC analysis with a refractive index (RI) detector performed as reference measurement. Moreover, the presented biosensor platform demonstrated outstanding mechanical stability in direct contact with the fermentation medium and accurate glucose quantification in the presence of various electroactive species. Coupled with the developed methodology it can be readily considered as a simple, robust, accurate and inexpensive tool for real-time glucose monitoring in fermentation processes.

摘要

对于实验室和工业规模的实验而言,发酵过程的监测与控制仍然是一项严峻的挑战。以在线模式可靠地识别和量化关键过程参数,能够使发酵过程以最佳的反应器效率运行,在最大限度提高生产率的同时将浪费降至最低。然而,目前最先进的发酵在线监测仍仅限于一些标准测量,如pH值、温度和溶解氧,以及作为一种先进手段的废气分析。尽管已有基于商业生物传感器的平台用于医疗保健领域对葡萄糖和各种生物变量的连续监测,但发酵过程中的在线葡萄糖定量在很大程度上尚未实现。这项工作首次全面研究了一种集成了电化学葡萄糖生物传感器(第一代)的商用流通池,该流通池应用于不同介质,重要的是,在酵母补料分批发酵过程中进行了离线和在线监测。值得注意的是,基于葡萄糖生物传感器的平台与所开发的方法相结合,在不受氧气限制的情况下,能够在复杂的发酵液中检测无细胞和含细胞样品中高达150 mM的葡萄糖浓度。这比文献中先前描述的主要将生物传感器应用于无细胞发酵样品的浓度高出四至六倍。与使用折光指数(RI)检测器作为参考测量的传统高效液相色谱分析相比,自动化生物传感器平台能够以显著更少的资源和时间(<5分钟)消耗方式进行可靠的葡萄糖定量。此外,所展示的生物传感器平台在与发酵培养基直接接触时表现出出色的机械稳定性,并且在存在各种电活性物质的情况下能够准确进行葡萄糖定量。结合所开发的方法,它可以很容易地被视为一种用于发酵过程中实时葡萄糖监测的简单、稳健、准确且廉价的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb7a/7253623/78e6faab5cac/fbioe-08-00436-g001.jpg

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