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Rapid and Sensitive Detection of Bacteria Response to Antibiotics Using Nanoporous Membrane and Graphene Quantum Dot (GQDs)-Based Electrochemical Biosensors

机译:使用基于纳米孔膜和石墨烯量子点(GQDs)的电化学生物传感器快速灵敏地检测细菌对抗生素的反应

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The wide abuse of antibiotics has accelerated bacterial multiresistance, which means there is a need to develop tools for rapid detection and characterization of bacterial response to antibiotics in the management of infections. In the study, an electrochemical biosensor based on nanoporous alumina membrane and graphene quantum dots (GQDs) was developed for bacterial response to antibiotics detection. Anti- Salmonella antibody was conjugated with amino-modified GQDs by glutaraldehyde and immobilized on silanized nanoporous alumina membranes for Salmonella bacteria capture. The impedance signals across nanoporous membranes could monitor the capture of bacteria on nanoporous membranes as well as bacterial response to antibiotics. This nanoporous membrane and GQD-based electrochemical biosensor achieved rapid detection of bacterial response to antibiotics within 30 min, and the detection limit could reach the pM level. It was capable of investigating the response of bacteria exposed to antibiotics much more rapidly and conveniently than traditional tools. The capability of studying the dynamic effects of antibiotics on bacteria has potential applications in the field of monitoring disease therapy, detecting comprehensive food safety hazards and even life in hostile environment.
机译:抗生素的广泛滥用加速了细菌的多重耐药性,这意味着需要开发工具来快速检测和表征感染管理中细菌对抗生素的反应。在这项研究中,开发了一种基于纳米多孔氧化铝膜和石墨烯量子点(GQD)的电化学生物传感器,用于细菌对抗生素的检测。通过戊二醛将抗沙门氏菌抗体与氨基修饰的GQD偶联,并固定在硅烷化的纳米多孔氧化铝膜上以捕获沙门氏菌。跨纳米孔膜的阻抗信号可以监测细菌在纳米孔膜上的捕获以及细菌对抗生素的反应。这种基于纳米孔膜和GQD的电化学生物传感器可在30分钟内快速检测出细菌对抗生素的反应,并且检测限可达到pM水平。与传统工具相比,它能够更快,更方便地调查暴露于抗生素的细菌的反应。研究抗生素对细菌的动态作用的能力在监测疾病治疗,检测全面的食品安全危害甚至在恶劣环境中的生命方面具有潜在的应用。

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