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用于检测抗生素耐药细菌的电化学传感器的最新进展

Recent Developments in Electrochemical Sensors for the Detection of Antibiotic-Resistant Bacteria.

作者信息

Madhu Sekar, Ramasamy Sriramprabha, Choi Jungil

机构信息

Department of Mechanical Engineering, Ajou University, Suwon 16499, Republic of Korea.

出版信息

Pharmaceuticals (Basel). 2022 Nov 29;15(12):1488. doi: 10.3390/ph15121488.

Abstract

The development of efficient point-of-care (POC) diagnostic tools for detecting infectious diseases caused by destructive pathogens plays an important role in clinical and environmental monitoring. Nevertheless, evolving complex and inconsistent antibiotic-resistant species mire their drug efficacy. In this regard, substantial effort has been expended to develop electrochemical sensors, which have gained significant interest for advancing POC testing with rapid and accurate detection of resistant bacteria at a low cost compared to conventional phenotype methods. This review concentrates on the recent developments in electrochemical sensing techniques that have been applied to assess the diverse latent antibiotic resistances of pathogenic bacteria. It deliberates the prominence of biorecognition probes and tailor-made nanomaterials used in electrochemical antibiotic susceptibility testing (AST). In addition, the bimodal functional efficacy of nanomaterials that can serve as potential transducer electrodes and the antimicrobial agent was investigated to meet the current requirements in designing sensor module development. In the final section, we discuss the challenges with contemporary AST sensor techniques and extend the key ideas to meet the demands of the next POC electrochemical sensors and antibiotic design modules in the healthcare sector.

摘要

开发用于检测由致病性病原菌引起的传染病的高效即时检测(POC)诊断工具,在临床和环境监测中发挥着重要作用。然而,不断演变的复杂且不一致的抗生素耐药菌种使其药物疗效受到影响。在这方面,人们已投入大量精力开发电化学传感器,与传统表型方法相比,电化学传感器因能够以低成本快速准确地检测耐药细菌,在推进即时检测方面引起了极大关注。本综述聚焦于电化学传感技术的最新进展,这些技术已被应用于评估病原菌的多种潜在抗生素耐药性。它探讨了生物识别探针和用于电化学抗生素敏感性测试(AST)的定制纳米材料的重要性。此外,还研究了可作为潜在换能器电极和抗菌剂的纳米材料的双峰功能功效,以满足当前设计传感器模块开发的要求。在最后一部分,我们讨论了当代AST传感器技术面临的挑战,并拓展了关键思路,以满足医疗保健领域下一代即时检测电化学传感器和抗生素设计模块的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4c2/9786047/67a9e9cf47ba/pharmaceuticals-15-01488-g003.jpg

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