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用于生物医学诊断的光学传感器的最新进展。

Recent Progress in Optical Sensors for Biomedical Diagnostics.

作者信息

Pirzada Muqsit, Altintas Zeynep

机构信息

Institute of Chemistry, Technical University of Berlin, Straße des 17. Juni 124, 10623 Berlin, Germany.

出版信息

Micromachines (Basel). 2020 Mar 30;11(4):356. doi: 10.3390/mi11040356.

Abstract

In recent years, several types of optical sensors have been probed for their aptitude in healthcare biosensing, making their applications in biomedical diagnostics a rapidly evolving subject. Optical sensors show versatility amongst different receptor types and even permit the integration of different detection mechanisms. Such conjugated sensing platforms facilitate the exploitation of their neoteric synergistic characteristics for sensor fabrication. This paper covers nearly 250 research articles since 2016 representing the emerging interest in rapid, reproducible and ultrasensitive assays in clinical analysis. Therefore, we present an elaborate review of biomedical diagnostics with the help of optical sensors working on varied principles such as surface plasmon resonance, localised surface plasmon resonance, evanescent wave fluorescence, bioluminescence and several others. These sensors are capable of investigating toxins, proteins, pathogens, disease biomarkers and whole cells in varied sensing media ranging from water to buffer to more complex environments such as serum, blood or urine. Hence, the recent trends discussed in this review hold enormous potential for the widespread use of optical sensors in early-stage disease prediction and point-of-care testing devices.

摘要

近年来,人们对几种类型的光学传感器在医疗生物传感方面的适用性进行了探索,这使得它们在生物医学诊断中的应用成为一个快速发展的领域。光学传感器在不同类型的受体中表现出多功能性,甚至允许集成不同的检测机制。这种共轭传感平台有助于利用其新型协同特性进行传感器制造。本文涵盖了自2016年以来近250篇研究文章,代表了临床分析中对快速、可重复和超灵敏检测方法的新兴兴趣。因此,我们借助基于表面等离子体共振、局域表面等离子体共振、倏逝波荧光、生物发光等多种原理工作的光学传感器,对生物医学诊断进行了详尽的综述。这些传感器能够在从水到缓冲液再到血清、血液或尿液等更复杂环境的各种传感介质中检测毒素、蛋白质、病原体、疾病生物标志物和全细胞。因此,本综述中讨论的最新趋势为光学传感器在疾病早期预测和即时检测设备中的广泛应用具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1257/7231100/5fd1680badc7/micromachines-11-00356-g001.jpg

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