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仿生电化学传感器:生物传感应用中的新视野与挑战

Biomimetic electrochemical sensors: New horizons and challenges in biosensing applications.

作者信息

Romanholo Pedro V V, Razzino Claudia A, Raymundo-Pereira Paulo A, Prado Thiago M, Machado Sergio A S, Sgobbi Livia F

机构信息

Instituto de Química, Universidade Federal de Goiás, Goiânia, GO, 74690-900, Brazil.

Instituto de Pesquisa e Desenvolvimento, Universidade Do Vale Do Paraíba, São José Dos Campos, SP, 12244-000, Brazil.

出版信息

Biosens Bioelectron. 2021 Aug 1;185:113242. doi: 10.1016/j.bios.2021.113242. Epub 2021 Apr 17.

Abstract

The urge to meet the ever-growing needs of sensing technology has spurred research to look for new alternatives to traditional analytical methods. In this scenario, the glucometer is the flagship of commercial electrochemical sensing platforms, combining selectivity, reliability and portability. However, other types of enzyme-based biosensors seldom achieve the market, in spite of the large and increasing number of publications. The reasons behind their commercial limitations concern enzyme denaturation, and the high costs associated with procedures for their extraction and purification. In this sense, biomimetic materials that seek to imitate the desired properties of natural enzymes and biological systems have come out as an appealing path for robust and sensitive electrochemical biosensors. We herein portray the historical background of these biomimicking materials, covering from their beginnings until the most impactful applications in the field of electrochemical sensing platforms. Throughout the discussion, we present and critically appraise the major benefits and the most significant drawbacks offered by the bioinspired systems categorized as Nanozymes, Synzymes, Molecularly Imprinted Polymers (MIPs), Nanochannels, and Metal Complexes. Innovative strategies of fabrication and challenging applications are further reviewed and evaluated. In the end, we ponder over the prospects of this emerging field, assessing the most critical issues that shall be faced in the coming decade.

摘要

满足传感技术不断增长需求的迫切愿望促使人们开展研究,以寻找传统分析方法的新替代方案。在这种情况下,血糖仪是商业电化学传感平台的旗舰产品,兼具选择性、可靠性和便携性。然而,尽管发表的相关文献数量众多且不断增加,但其他类型的基于酶的生物传感器很少能进入市场。其商业局限性背后的原因涉及酶变性以及与酶提取和纯化程序相关的高成本。从这个意义上说,旨在模仿天然酶和生物系统所需特性的仿生材料已成为制造坚固且灵敏的电化学生物传感器的一条有吸引力的途径。我们在此描述这些仿生材料的历史背景,涵盖从其起源到在电化学传感平台领域最具影响力的应用。在整个讨论过程中,我们展示并批判性地评估了归类为纳米酶、合成酶、分子印迹聚合物(MIP)、纳米通道和金属配合物的生物启发系统所提供的主要优点和最显著缺点。还进一步回顾和评估了创新的制造策略和具有挑战性的应用。最后,我们思考这个新兴领域的前景,评估未来十年将面临的最关键问题。

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