EXPAR for Biosensing: Recent Developments and Applications

Abstract

Emerging as a promising novel amplification technique, the exponential amplification reaction (EXPAR) offers significant advantages due to its potent exponential amplification capability, straightforward reaction design, rapid reaction kinetics, and isothermal operation. The past few years have witnessed swift advancements and refinements in EXPAR-based technologies, with numerous high-performance biosensing systems documented. A deeper understanding of the EXPAR mechanism has facilitated the proposal of novel strategies to overcome limitations inherent to traditional EXPAR. Furthermore, the synergistic integration of EXPAR with diverse amplification methodologies, including the CRISPR/Cas system, metal nanoparticles, aptamers, alternative isothermal amplification techniques, and enzymes, has significantly bolstered analytical efficacy, aiming to enhance specificity, sensitivity, and amplification efficiency. This comprehensive review presents a detailed exposition of the EXPAR mechanism and analyzes its primary challenges. Additionally, we summarize the latest research advancements in the biomedical field concerning the integration of EXPAR with diverse amplification technologies for sensing strategies. Finally, we discuss the challenges and future prospects of EXPAR technology in the realms of biosensing and clinical applications.

Article information

Article type
Critical Review
Submitted
24 Apr 2024
Accepted
09 Jul 2024
First published
10 Jul 2024
This article is Open Access
Creative Commons BY license

Analyst, 2024, Accepted Manuscript

EXPAR for Biosensing: Recent Developments and Applications

X. Ou, K. Li, M. Liu, J. Song, Z. Zuo and Y. Guo, Analyst, 2024, Accepted Manuscript , DOI: 10.1039/D4AN00609G

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