Smida Hassiba, Langlard Arthur, Ameline Dorine, Thobie-Gautier Christine, Boujtita Mohammed, Lebègue Estelle
Nantes Université, CNRS, CEISAM, UMR 6230, F-44000, Nantes, France.
Anal Bioanal Chem. 2023 Jul;415(18):3717-3725. doi: 10.1007/s00216-023-04568-z. Epub 2023 Feb 9.
Single-impact electrochemistry for the analysis of bacteria is a powerful technique for biosensing applications at the single-cell scale. The sensitivity of this electro-analytical method has been widely demonstrated based on chronoamperometric measurements at an ultramicroelectrode polarized at the appropriate potential of redox species in solution. Furthermore, the most recent studies display a continuous improvement in the ability of this sensitive electrochemical method to identify different bacterial strains with better selectivity. To achieve this, several strategies, such as the presence of a redox mediator, have been investigated for detecting and identifying the bacterial cell through its own electrochemical behavior. Both the blocking electrochemical impacts method and electrochemical collisions of single bacteria with a redox mediator are reported in this review and discussed through relevant examples. An original sensing strategy for virulence factors originating from pathogenic bacteria is also presented, based on a recent proof of concept dealing with redox liposome single-impact electrochemistry. The limitations, applications, perspectives, and challenges of single-impact electrochemistry for bacteria analysis are briefly discussed, based on the most significant published data.
用于细菌分析的单冲击电化学是一种在单细胞尺度上进行生物传感应用的强大技术。基于在超微电极上对溶液中氧化还原物质的适当电位进行计时电流测量,这种电分析方法的灵敏度已得到广泛证明。此外,最近的研究表明,这种灵敏的电化学方法识别不同细菌菌株的能力在选择性方面不断提高。为了实现这一点,已经研究了几种策略,例如使用氧化还原介质,通过细菌自身的电化学行为来检测和识别细菌细胞。本文综述了阻断电化学冲击法和单个细菌与氧化还原介质的电化学碰撞,并通过相关实例进行了讨论。基于最近关于氧化还原脂质体单冲击电化学的概念验证,还提出了一种针对病原菌毒力因子的原始传感策略。基于已发表的最重要数据,简要讨论了单冲击电化学在细菌分析中的局限性、应用、前景和挑战。