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基于肽的电化学生物传感器的传染病检测策略。

Detection strategies of infectious diseases via peptide-based electrochemical biosensors.

机构信息

Department of Biochemistry, Faculty of Science, Ege University, Bornova, Izmir 35100, Turkey.

Central Research Test and Analysis Laboratory, Application and Research Center, Ege University, Bornova, Izmir 35100, Turkey.

出版信息

Bioelectrochemistry. 2024 Dec;160:108784. doi: 10.1016/j.bioelechem.2024.108784. Epub 2024 Jul 26.

Abstract

Infectious diseases have threatened human life for as long as humankind has existed. One of the most crucial aspects of fighting against these infections is diagnosis to prevent disease spread. However, traditional diagnostic methods prove insufficient and time-consuming in the face of a pandemic. Therefore, studies focusing on detecting viruses causing these diseases have increased, with a particular emphasis on developing rapid, accurate, specific, user-friendly, and portable electrochemical biosensor systems. Peptides are used integral components in biosensor fabrication for several reasons, including various and adaptable synthesis protocols, long-term stability, and specificity. Here, we discuss peptide-based electrochemical biosensor systems that have been developed over the last decade for the detection of infectious diseases. In contrast to other reports on peptide-based biosensors, we have emphasized the following points i) the synthesis methods of peptides for biosensor applications, ii) biosensor fabrication approaches of peptide-based electrochemical biosensor systems, iii) the comparison of electrochemical biosensors with other peptide-based biosensor systems and the advantages and limitations of electrochemical biosensors, iv) the pros and cons of peptides compared to other biorecognition molecules in the detection of infectious diseases, v) different perspectives for future studies with the shortcomings of the systems developed in the past decade.

摘要

传染病威胁着人类的生命,自从人类存在以来,传染病一直存在。对抗这些感染的最重要的方面之一是诊断,以防止疾病传播。然而,面对大流行,传统的诊断方法证明是不够和耗时的。因此,研究集中在检测导致这些疾病的病毒上,特别强调开发快速、准确、特异、用户友好和便携式电化学生物传感器系统。由于各种原因,肽被用作生物传感器制造的组成部分,包括各种和可适应的合成方案、长期稳定性和特异性。在这里,我们讨论了过去十年中为检测传染病而开发的基于肽的电化学生物传感器系统。与其他关于基于肽的生物传感器的报告相比,我们强调了以下几点:i)用于生物传感器应用的肽的合成方法,ii)基于肽的电化学生物传感器系统的生物传感器制造方法,iii)电化学生物传感器与其他基于肽的生物传感器系统的比较以及电化学生物传感器的优点和局限性,iv)与其他生物识别分子相比,肽在检测传染病中的优缺点,v)不同的未来研究视角以及过去十年中开发的系统的缺点。

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