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基于纳米酶的电化学生物传感器用于疾病生物标志物检测。

Nanozyme-based electrochemical biosensors for disease biomarker detection.

机构信息

Institute of BioPhysio-Sensor Technology, Pusan National University, Busan 46241, South Korea.

出版信息

Analyst. 2020 Jul 7;145(13):4398-4420. doi: 10.1039/d0an00558d. Epub 2020 May 21.

Abstract

In recent years, a new group of nanomaterials named nanozymes that exhibit enzyme-mimicking catalytic activity has emerged as a promising alternative to natural enzymes. Nanozymes can address some of the intrinsic limitations of natural enzymes such as high cost, low stability, difficulty in storage, and specific working conditions (i.e., narrow substrate, temperature and pH ranges). Thus, synthesis and applications of hybrid and stimuli-responsive advanced nanozymes could revolutionize the current practice in life sciences and biosensor applications. On the other hand, electrochemical biosensors have long been used as an efficient way for quantitative detection of analytes (biomarkers) of interest. As such, the use of nanozymes in electrochemical biosensors is particularly important to achieve low cost and stable biosensors for prognostics, diagnostics, and therapeutic monitoring of diseases. Herein, we summarize the recent advances in the synthesis and classification of common nanozymes and their application in electrochemical biosensor development. After briefly overviewing the applications of nanozymes in non-electrochemical-based biomolecular sensing systems, we thoroughly discuss the state-of-the-art advances in nanozyme-based electrochemical biosensors, including genosensors, immunosensors, cytosensors and aptasensors. The applications of nanozymes in microfluidic-based assays are also discussed separately. We also highlight the challenges of nanozyme-based electrochemical biosensors and provide some possible strategies to address these limitations. Finally, future perspectives on the development of nanozyme-based electrochemical biosensors for disease biomarker detection are presented. We envisage that standardization of nanozymes and their fabrication process may bring a paradigm shift in biomolecular sensing by fabricating highly specific, multi-enzyme mimicking nanozymes for highly sensitive, selective, and low-biofouling electrochemical biosensors.

摘要

近年来,出现了一类新的纳米材料,被称为纳米酶,其具有模拟酶催化活性,是天然酶的一种很有前途的替代品。纳米酶可以解决天然酶的一些固有局限性,如成本高、稳定性低、储存困难和特定工作条件(即窄的底物、温度和 pH 范围)。因此,杂化和响应性先进纳米酶的合成和应用可能会彻底改变生命科学和生物传感器应用的现状。另一方面,电化学生物传感器长期以来一直被用作定量检测感兴趣的分析物(生物标志物)的有效方法。因此,纳米酶在电化学生物传感器中的应用对于实现低成本和稳定的生物传感器以进行疾病的预后、诊断和治疗监测尤为重要。本文总结了常见纳米酶的合成和分类及其在电化学生物传感器开发中的应用的最新进展。在简要概述纳米酶在非电化学基于生物分子传感系统中的应用之后,我们深入讨论了基于纳米酶的电化学生物传感器的最新进展,包括基因传感器、免疫传感器、细胞传感器和适体传感器。还分别讨论了纳米酶在微流控分析中的应用。我们还强调了基于纳米酶的电化学生物传感器面临的挑战,并提供了一些解决这些限制的可能策略。最后,提出了基于纳米酶的电化学生物传感器用于疾病生物标志物检测的未来展望。我们预计,纳米酶的标准化及其制造工艺可能会通过制造高度特异性、多酶模拟纳米酶,为高度敏感、选择性和低生物污染的电化学生物传感器带来范式转变。

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