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Review
. 2024 Apr;69(2):283-304.
doi: 10.1007/s12223-024-01144-5. Epub 2024 Feb 17.

Electrochemical biosensors for pathogenic microorganisms detection based on recognition elements

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Review

Electrochemical biosensors for pathogenic microorganisms detection based on recognition elements

Mengting Pan et al. Folia Microbiol (Praha). 2024 Apr.

Abstract

The worldwide spread of pathogenic microorganisms poses a significant risk to human health. Electrochemical biosensors have emerged as dependable analytical tools for the point-of-care detection of pathogens and can effectively compensate for the limitations of conventional techniques. Real-time analysis, high throughput, portability, and rapidity make them pioneering tools for on-site detection of pathogens. Herein, this work comprehensively reviews the recent advances in electrochemical biosensors for pathogen detection, focusing on those based on the classification of recognition elements, and summarizes their principles, current challenges, and prospects. This review was conducted by a systematic search of PubMed and Web of Science databases to obtain relevant literature and construct a basic framework. A total of 171 publications were included after online screening and data extraction to obtain information of the research advances in electrochemical biosensors for pathogen detection. According to the findings, the research of electrochemical biosensors in pathogen detection has been increasing yearly in the past 3 years, which has a broad development prospect, but most of the biosensors have performance or economic limitations and are still in the primary stage. Therefore, significant research and funding are required to fuel the rapid development of electrochemical biosensors. The overview comprehensively evaluates the recent advances in different types of electrochemical biosensors utilized in pathogen detection, with a view to providing insights into future research directions in biosensors.

Keywords: Biosensor; Detection; Electrochemical; Pathogenic microorganism; Recognition element.

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References

    1. Abbaspour A, Norouz-Sarvestani F, Noori A, Soltani N (2015) Aptamer-conjugated silver nanoparticles for electrochemical dual-aptamer-based sandwich detection of staphylococcus aureus. Biosens Bioelectron 68:149–155. https://doi.org/10.1016/j.bios.2014.12.040 - DOI
    1. Abdelhamied N, Abdelrahman F, El-Shibiny A, Hassan RYA (2023) Bacteriophage-based nano-biosensors for the fast impedimetric determination of pathogens in food samples. Sci Rep 13:3498. https://doi.org/10.1038/s41598-023-30520-3 - DOI
    1. Abdelrasoul GN, Anwar A, MacKay S, Tamura M, Shah MA, Khasa DP, Montgomery RR, Ko AI, Chen J (2020) DNA aptamer-based non-faradaic impedance biosensor for detecting E. coli. Anal Chim Acta 1107:135–144. https://doi.org/10.1016/j.aca.2020.02.004 - DOI
    1. Adrover-Jaume C, Clemente A, Rodríguez-Urretavizcaya B, Vilaplana L, Marco MP, Rojo-Molinero E, Oliver A, de la Rica R (2023) A paper biosensor for overcoming matrix effects interfering with the detection of sputum pyocyanin with competitive immunoassays. Mikrochim Acta 190:441. https://doi.org/10.1007/s00604-023-06017-1 - DOI
    1. Ahangari H, Kurbanoglu S, Ehsani A, Uslu B (2021) Latest trends for biogenic amines detection in foods: enzymatic biosensors and nanozymes applications. Trends Food Sci Technol 112:75–87. https://doi.org/10.1016/j.tifs.2021.03.037 - DOI

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