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用于检测癌症生物标志物的基于电化学纳米材料的适配体传感器的最新进展。

Recent advances in electrochemical nanomaterial-based aptasensors for the detection of cancer biomarkers.

作者信息

Negahdary Masoud, Angnes Lúcio

机构信息

Department of Fundamental Chemistry, Institute of Chemistry, University of São Paulo, Av. Prof. Lineu Prestes, 748, São Paulo, 05508-000, Brazil.

出版信息

Talanta. 2023 Jul 1;259:124548. doi: 10.1016/j.talanta.2023.124548. Epub 2023 Apr 11.

Abstract

New technologies have provided suitable tools for rapid diagnosis of cancer which can reduce treatment costs and even increase patients' survival rates. Recently, the development of electrochemical aptamer-based nanobiosensors has raised great hopes for early, sensitive, selective, and low-cost cancer diagnosis. Here, we reviewed the flagged recent research (2021-2023) developed as a series of biosensors equipped with nanomaterials and aptamer sequences (nanoaptasensors) to diagnose/prognosis of various types of cancers. Equipping these aptasensors with nanomaterials and using advanced biomolecular technologies have provided specified biosensing interfaces for more optimal and reliable detection of cancer biomarkers. The primary intention of this review was to present and categorize the latest innovations used in the design of these diagnostic tools, including the hottest surface modifications and assembly of sensing bioplatforms considering diagnostic mechanisms. The main classification is based on applying various nanomaterials and sub-classifications considered based on the type of analyte and other vital features. This review may help design subsequent electrochemical aptasensors. Likewise, the up-to-date status, remaining limitations, and possible paths for translating aptasensors to clinical cancer assay tools can be clarified.

摘要

新技术为癌症的快速诊断提供了合适的工具,这可以降低治疗成本,甚至提高患者的生存率。最近,基于电化学适配体的纳米生物传感器的发展为早期、灵敏、选择性和低成本的癌症诊断带来了巨大希望。在此,我们回顾了近期(2021 - 2023年)作为一系列配备纳米材料和适配体序列的生物传感器(纳米适配体传感器)开发的重点研究,用于诊断/预测各种类型的癌症。为这些适配体传感器配备纳米材料并使用先进的生物分子技术,为更优化、可靠地检测癌症生物标志物提供了特定的生物传感界面。本综述的主要目的是展示和分类这些诊断工具设计中使用的最新创新,包括考虑诊断机制的最热门的表面修饰和传感生物平台的组装。主要分类基于应用各种纳米材料,子分类则根据分析物的类型和其他重要特征来考虑。本综述可能有助于设计后续的电化学适配体传感器。同样,可以阐明适配体传感器转化为临床癌症检测工具的最新状况、剩余局限性和可能的途径。

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