光化学传感器在微生物反应器中的集成与应用。

Integration and application of optical chemical sensors in microbioreactors.

机构信息

Department of Biochemical Engineering, University College London, Gower Street, WC1E 6BT, London, UK.

出版信息

Lab Chip. 2017 Aug 8;17(16):2693-2712. doi: 10.1039/c7lc00538e.

Abstract

The quantification of key variables such as oxygen, pH, carbon dioxide, glucose, and temperature provides essential information for biological and biotechnological applications and their development. Microfluidic devices offer an opportunity to accelerate research and development in these areas due to their small scale, and the fine control over the microenvironment, provided that these key variables can be measured. Optical sensors are well-suited for this task. They offer non-invasive and non-destructive monitoring of the mentioned variables, and the establishment of time-course profiles without the need for sampling from the microfluidic devices. They can also be implemented in larger systems, facilitating cross-scale comparison of analytical data. This tutorial review presents an overview of the optical sensors and their technology, with a view to support current and potential new users in microfluidics and biotechnology in the implementation of such sensors. It introduces the benefits and challenges of sensor integration, including, their application for microbioreactors. Sensor formats, integration methods, device bonding options, and monitoring options are explained. Luminescent sensors for oxygen, pH, carbon dioxide, glucose and temperature are showcased. Areas where further development is needed are highlighted with the intent to guide future development efforts towards analytes for which reliable, stable, or easily integrated detection methods are not yet available.

摘要

对氧气、pH 值、二氧化碳、葡萄糖和温度等关键变量进行定量分析,可为生物和生物技术应用及其发展提供重要信息。微流控设备由于其规模小,能够精细控制微环境,为这些领域的研究和开发提供了机会。只要这些关键变量能够被测量,光学传感器非常适合这项任务。它们可以非侵入式和非破坏性地监测上述变量,并在无需从微流控设备中采样的情况下建立时程曲线。它们还可以在更大的系统中实现,便于对分析数据进行跨尺度比较。本教程综述介绍了光学传感器及其技术,旨在为微流控和生物技术领域的当前和潜在新用户在实施此类传感器方面提供支持。它介绍了传感器集成的优势和挑战,包括其在微生物反应器中的应用。解释了传感器格式、集成方法、器件键合选项和监测选项。展示了用于氧气、pH 值、二氧化碳、葡萄糖和温度的荧光传感器。突出了需要进一步开发的领域,旨在引导未来的开发工作朝着那些目前还没有可靠、稳定或易于集成的检测方法的分析物进行。

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