Biofuels Institute, School of the Environment, Jiangsu University, 301 Xuefu Road, Zhenjiang 212013, Jiangsu Province, China.
The department of clinical microbiology of Zhejiang Provincial People's Hospital, People's Hospital of Hangzhou Medical College, Hangzhou, 158 Shangtang Road, 310014 Zhejiang Province, China.
Biosens Bioelectron. 2017 Dec 15;98:338-344. doi: 10.1016/j.bios.2017.07.008. Epub 2017 Jul 5.
A bioelectrochemical sensing system based on a novel whole-cell redox reactivation/cycling module for ultrasensitive detection of pyocyanin (the biomarker of Pseudomonas aeruginosa infections) was developed. The electroactive bacteria mediated redox reactivation module was constructed using Shewanella oneidensis MR-1 cells as the bioelectro-catalyst and lactate as the electron donor. It could regenerate reductive pyocyanin from its oxidative state, which enabled pyocyanin molecule repeatedly registered by the electrode. Uniquely, with this redox reactivation module, the electrochemical response of pyocyanin was amplified about 405 times (1.3 μA/nM vs. 3.2nA/nM). Thus, an ultrasensitive bioelectrochemical sensing system for pyocyanin quantification was developed by integrating the pyocyanin reactivation module with conventional electrochemical detection system. Remarkably, with this developed biosensing system, an extremely low LOD of 47±1pM was reached. Additionally, this biosensing system showed excellent resistance to interferences from human fluids or bacterial contamination. This work provided a simple, ultrasensitive and robust tool for pyocyanin detection, and more importantly, demonstrated a new dimension for electrochemical signal amplification in biosensing.
基于新型全细胞氧化还原再激活/循环模块的生物电化学传感系统被开发出来,用于超灵敏检测绿脓菌素(铜绿假单胞菌感染的生物标志物)。电活性细菌介导的氧化还原再激活模块使用希瓦氏菌属(Shewanella oneidensis MR-1)细胞作为生物电催化剂,以乳酸作为电子供体构建。它可以将氧化态的还原型绿脓菌素重新激活,从而使绿脓菌素分子可以被电极反复记录。独特的是,通过这个氧化还原再激活模块,绿脓菌素的电化学响应被放大了约 405 倍(1.3 μA/nM 对 3.2nA/nM)。因此,通过将绿脓菌素再激活模块与传统电化学检测系统集成,开发了一种用于绿脓菌素定量的超灵敏生物电化学传感系统。值得注意的是,使用这个开发的生物传感系统,检测到的绿脓菌素的检测限(LOD)达到了低至 47±1pM。此外,该生物传感系统对人体体液或细菌污染的干扰具有出色的抵抗力。这项工作为绿脓菌素检测提供了一种简单、超灵敏和强大的工具,更重要的是,展示了电化学生物传感中信号放大的新维度。