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以碳纳米材料作为电极修饰剂的电化学亲和生物传感器的诊断策略

Diagnostics Strategies with Electrochemical Affinity Biosensors Using Carbon Nanomaterials as Electrode Modifiers.

作者信息

Campuzano Susana, Yáñez-Sedeño Paloma, Pingarrón José M

机构信息

Departamento de Química Analítica, Facultad de CC. Químicas, Universidad Complutense de Madrid, E-28040 Madrid, Spain.

出版信息

Diagnostics (Basel). 2016 Dec 26;7(1):2. doi: 10.3390/diagnostics7010002.

Abstract

Early diagnosis is often the key to successful patient treatment and survival. The identification of various disease signaling biomarkers which reliably reflect normal and disease states in humans in biological fluids explain the burgeoning research field in developing new methodologies able to determine the target biomarkers in complex biological samples with the required sensitivity and selectivity and in a simple and rapid way. The unique advantages offered by electrochemical sensors together with the availability of high affinity and specific bioreceptors and their great capabilities in terms of sensitivity and stability imparted by nanostructuring the electrode surface with different carbon nanomaterials have led to the development of new electrochemical biosensing strategies that have flourished as interesting alternatives to conventional methodologies for clinical diagnostics. This paper briefly reviews the advantages of using carbon nanostructures and their hybrid nanocomposites as electrode modifiers to construct efficient electrochemical sensing platforms for diagnosis. The review provides an updated overview of some selected examples involving attractive amplification and biosensing approaches which have been applied to the determination of relevant genetic and protein diagnostics biomarkers.

摘要

早期诊断往往是患者治疗成功和存活的关键。在生物体液中识别各种能够可靠反映人类正常和疾病状态的疾病信号生物标志物,这解释了在开发新方法领域的蓬勃研究,这些新方法能够以所需的灵敏度和选择性,简单快速地在复杂生物样品中测定目标生物标志物。电化学传感器所具有的独特优势,以及高亲和力和特异性生物受体的可用性,再加上通过用不同碳纳米材料对电极表面进行纳米结构化而赋予它们在灵敏度和稳定性方面的强大能力,已促使新型电化学生物传感策略的发展,这些策略已成为临床诊断传统方法的有趣替代方案。本文简要回顾了使用碳纳米结构及其混合纳米复合材料作为电极修饰剂来构建用于诊断的高效电化学传感平台的优势。该综述提供了一些选定实例的最新概述,这些实例涉及有吸引力的放大和生物传感方法,这些方法已应用于相关基因和蛋白质诊断生物标志物的测定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e30a/5373011/37f3c0286752/diagnostics-07-00002-g001.jpg

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