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用于传感的电活性生物膜:思考与展望

Electroactive Biofilms for Sensing: Reflections and Perspectives.

作者信息

Prévoteau Antonin, Rabaey Korneel

机构信息

Center for Microbial Ecology and Technology, Ghent University , Coupure Links 653, 9000 Ghent, Belgium.

出版信息

ACS Sens. 2017 Aug 25;2(8):1072-1085. doi: 10.1021/acssensors.7b00418. Epub 2017 Jul 26.

Abstract

Microbial electrochemistry has from the onset been recognized for its sensing potential due to the microbial ability to enhance signals through metabolic cascades, its relative selectivity toward substrates, and the higher stability conferred by the microbial ability to self-replicate. The greatest challenge has been to achieve stable and efficient transduction between a microorganism and an electrode surface. Over the past decades, a new kind of microbial architecture has been observed to spontaneously develop on polarized electrodes: the electroactive biofilm (EAB). The EAB conducts electrons over long distances and performs quasi-reversible electron transfer on conventional electrode surfaces. It also possesses self-regenerative properties. In only a few years, EABs have inspired considerable research interest for use as biosensors for environmental or bioprocess monitoring. Multiple challenges still need to be overcome before implementation at larger scale of this new kind of biosensors can be realized. This perspective first introduces the specific characteristics of the EAB with respect to other electrochemical biosensors. It summarizes the sensing applications currently proposed for EABs, stresses their limitations, and suggests strategies toward potential solutions. Conceptual prospects to engineer EABs for sensing purposes are also discussed.

摘要

微生物电化学从一开始就因其传感潜力而受到认可,这是由于微生物能够通过代谢级联增强信号、对底物具有相对选择性,以及微生物自我复制能力所赋予的更高稳定性。最大的挑战一直是在微生物与电极表面之间实现稳定且高效的转导。在过去几十年中,人们观察到一种新型的微生物结构会在极化电极上自发形成:即电活性生物膜(EAB)。EAB能够长距离传导电子,并在传统电极表面进行准可逆电子转移。它还具有自我再生特性。在短短几年内,EAB作为用于环境或生物过程监测的生物传感器激发了相当大的研究兴趣。在这种新型生物传感器能够大规模实施之前,仍有多个挑战需要克服。本观点首先介绍了EAB相对于其他电化学生物传感器的具体特性。总结了目前针对EAB提出的传感应用,强调了它们的局限性,并提出了潜在解决方案的策略。还讨论了为传感目的设计EAB的概念前景。

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