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用于无标记和超灵敏检测生物标志物的电容生物传感器。

Capacitive biosensors for label-free and ultrasensitive detection of biomarkers.

机构信息

Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China, Huzhou, China; School of Resources and Environment, University of Electronic Science and Technology of China, Chengdu, China.

Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China, Huzhou, China.

出版信息

Talanta. 2024 Jan 1;266(Pt 1):124951. doi: 10.1016/j.talanta.2023.124951. Epub 2023 Jul 20.

Abstract

Capacitive biosensors are label-free capacitors that can detect biomarkers with the outstanding advantages of simplicity, low cost, and ultrahigh sensitivity. A typical capacitive biosensor consists of a bioreceptor and a transducer, where the bioreceptor captures the biomarker to form a bioreceptor/biomarker conjugate and the transducer generates a detectable signal. In general, antibodies, aptamers, or proteins are exploited as the bioreceptor, while various electrodes including carbon electrodes (CEs), gold electrodes (AuEs), or interdigitated electrodes (IDEs) may serve as the transducer. Because the formation of bioreceptor/biomarker conjugates often leads to a change in capacitance, the capacitive signal is then employed for biomarker detection. This review summarizes recent advances in capacitive biosensors for the detection of biomarkers over the last five years. With a focus on the three common types of bioreceptors, i.e., antibodies, aptamers, and proteins, capacitive biosensors using CEs, AuEs, and IDEs as the transducers are discussed in detail. The immobilization of bioreceptors and signal amplification strategies are described to provide a robust overview of capacitive biosensors for biomarker detection. In addition, analytical methods and future prospects are given to support the application of capacitive biosensors.

摘要

电容式生物传感器是无标记的电容器,可通过突出的简单性、低成本和超高灵敏度来检测生物标志物。一个典型的电容式生物传感器由生物受体和换能器组成,其中生物受体捕获生物标志物以形成生物受体/生物标志物缀合物,而换能器产生可检测的信号。通常,抗体、适体或蛋白质被用作生物受体,而各种电极,包括碳电极 (CEs)、金电极 (AuEs) 或叉指电极 (IDEs),可用作换能器。由于生物受体/生物标志物缀合物的形成通常会导致电容变化,因此可以利用电容信号来检测生物标志物。本综述总结了过去五年中用于检测生物标志物的电容式生物传感器的最新进展。重点介绍了三种常见的生物受体,即抗体、适体和蛋白质,详细讨论了使用 CEs、AuEs 和 IDEs 作为换能器的电容式生物传感器。描述了生物受体的固定化和信号放大策略,为生物标志物检测的电容式生物传感器提供了全面的概述。此外,还给出了分析方法和未来展望,以支持电容式生物传感器的应用。

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