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电化学细胞基生物传感器在食品分析中的最新进展:传感器构建策略。

Recent advances in electrochemical cell-based biosensors for food analysis: Strategies for sensor construction.

机构信息

School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, PR China; Department of Mechanical Engineering, National University of Singapore, Singapore 117575, Singapore.

Department of Mechanical Engineering, National University of Singapore, Singapore 117575, Singapore.

出版信息

Biosens Bioelectron. 2024 Mar 15;248:115947. doi: 10.1016/j.bios.2023.115947. Epub 2024 Jan 1.

Abstract

Owing to their advantages such as great specificity, sensitivity, rapidity, and possibility of noninvasive and real-time monitoring, electrochemical cell-based biosensors (ECBBs) have been a powerful tool for food analysis encompassing the areas of nutrition, flavor, and safety. Notably, the distinctive biological relevance of ECBBs enables them to mimic physiological environments and reflect cellular behaviors, leading to valuable insights into the biological function of target components in food. Compared with previous reviews, this review fills the current gap in the narrative of ECBB construction strategies. The review commences by providing an overview of the materials and configuration of ECBBs, including cell types, cell immobilization strategies, electrode modification materials, and electrochemical sensing types. Subsequently, a detailed discussion is presented on the fabrication strategies of ECBBs in food analysis applications, which are categorized based on distinct signal sources. Lastly, we summarize the merits, drawbacks, and application scope of these diverse strategies, and discuss the current challenges and future perspectives of ECBBs. Consequently, this review provides guidance for the design of ECBBs with specific functions and promotes the application of ECBBs in food analysis.

摘要

由于电化学细胞生物传感器(ECBB)具有特异性强、灵敏度高、速度快、可进行非侵入性和实时监测等优点,因此已成为涵盖营养、风味和安全领域的食品分析的有力工具。值得注意的是,ECBB 的独特生物学相关性使其能够模拟生理环境并反映细胞行为,从而深入了解食品中目标成分的生物学功能。与之前的综述相比,本综述填补了 ECBB 构建策略叙述中的当前空白。本综述首先概述了 ECBB 的材料和结构,包括细胞类型、细胞固定化策略、电极修饰材料和电化学传感类型。随后,详细讨论了基于不同信号源的食品分析应用中 ECBB 的制造策略。最后,我们总结了这些不同策略的优点、缺点和应用范围,并讨论了 ECBB 的当前挑战和未来展望。因此,本综述为具有特定功能的 ECBB 的设计提供了指导,并促进了 ECBB 在食品分析中的应用。

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