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用于快速临床诊断的基于核酸的电化学生物传感器:进展、挑战与机遇

Nucleic acid-based electrochemical biosensors for rapid clinical diagnosis: advances, challenges, and opportunities.

作者信息

Hashem Abu, Hossain M A Motalib, Marlinda Ab Rahman, Mamun Mohammad Al, Sagadevan Suresh, Shahnavaz Zohreh, Simarani Khanom, Johan Mohd Rafie

机构信息

Nanotechnology and Catalysis Research Centre, Institute for Advanced Studies, University of Malaya, Kuala Lumpur, Malaysia.

Microbial Biotechnology Division, National Institute of Biotechnology, Dhaka, Bangladesh.

出版信息

Crit Rev Clin Lab Sci. 2022 May;59(3):156-177. doi: 10.1080/10408363.2021.1997898. Epub 2021 Dec 1.

Abstract

Clinical diagnostic tests should be quick, reliable, simple to perform, and affordable for diagnosis and treatment of diseases. In this regard, owing to their novel properties, biosensors have attracted the attention of scientists as well as end-users. They are efficient, stable, and relatively cheap. Biosensors have broad applications in medical diagnosis, including point-of-care (POC) monitoring, forensics, and biomedical research. The electrochemical nucleic acid (NA) biosensor, the latest invention in this field, combines the sensitivity of electroanalytical methods with the inherent bioselectivity of deoxyribonucleic acid (DNA) and ribonucleic acid (RNA). The NA biosensor exploits the affinity of single-stranded DNA/RNA for its complementary strand and is used to detect complementary sequences of NA based on hybridization. After the NA component in the sensor detects the analyte, a catalytic reaction or binding event that generates an electrical signal in the transducer ensues. Since 2000, much progress has been made in this field, but there are still numerous challenges. This critical review describes the advances, challenges, and prospects of NA-based electrochemical biosensors for clinical diagnosis. It includes the basic principles, classification, sensing enhancement strategies, and applications of biosensors as well as their advantages, limitations, and future prospects, and thus it should be useful to academics as well as industry in the improvement and application of EC NA biosensors.

摘要

临床诊断测试应具备快速、可靠、操作简便且价格低廉的特点,以用于疾病的诊断和治疗。在这方面,由于其新颖的特性,生物传感器已引起了科学家以及终端用户的关注。它们高效、稳定且相对便宜。生物传感器在医学诊断中有着广泛的应用,包括即时检测(POC)监测、法医学和生物医学研究。电化学核酸(NA)生物传感器是该领域的最新发明,它将电分析方法的灵敏度与脱氧核糖核酸(DNA)和核糖核酸(RNA)固有的生物选择性相结合。NA生物传感器利用单链DNA/RNA与其互补链的亲和力,基于杂交用于检测NA的互补序列。传感器中的NA成分检测到分析物后,会在换能器中引发产生电信号的催化反应或结合事件。自2000年以来,该领域已取得了很大进展,但仍存在众多挑战。这篇批判性综述描述了基于NA的电化学生物传感器在临床诊断方面的进展、挑战和前景。它包括生物传感器的基本原理、分类、传感增强策略及应用,以及它们的优点、局限性和未来前景,因此对于学术界和工业界在改进和应用电化学NA生物传感器方面应具有参考价值。

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