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用于外泌体检测的基于纳米材料的生物传感器的最新进展。

Recent advances in nanomaterial-based biosensors for the detection of exosomes.

作者信息

Zhang Linan, Gu Chunchuan, Wen Jiajun, Liu Guangxian, Liu Hongying, Li Lihua

机构信息

Hangzhou Dianzi University, Hangzhou, 310018, Zhejiang, China.

Department of Clinical Laboratory, Hangzhou Cancer Hospital, Hangzhou, 310002, Zhejiang, China.

出版信息

Anal Bioanal Chem. 2021 Jan;413(1):83-102. doi: 10.1007/s00216-020-03000-0. Epub 2020 Nov 8.

Abstract

Exosomes are a type of extracellular vesicle actively secreted by almost all eukaryotic cells. They are ideal candidates for reliable next-generation biomarkers in the early diagnosis and therapeutic response evaluation of cancer. Thus, the quantification of exosomes is crucial in facilitating clinical research and application. Compared with traditional materials, nanomaterials have better optical, magnetic, electrical, and catalytic properties due to their small size, high specific surface area, and variable structure. The incorporation of nanomaterials into sensing systems is an attractive approach towards improving sensitivity and can provide improved sensor selectivity and stability. In this paper, we summarize the progress in nanomaterial-based exosome detection methods, including electrochemical biosensors, photoelectrochemical biosensors, colorimetric biosensors, fluorescence biosensors, chemiluminescence biosensors, electrochemiluminescence biosensors, surface plasmon resonance biosensors, and surface-enhanced Raman spectroscopy biosensors. Moreover, future research directions and challenges in exosome detection methods are discussed. We hope that this article will offer an overview of nanomaterial-based exosome detection techniques and open new avenues in disease research.Graphical abstract.

摘要

外泌体是几乎所有真核细胞主动分泌的一种细胞外囊泡。它们是癌症早期诊断和治疗反应评估中可靠的下一代生物标志物的理想候选者。因此,外泌体的定量对于促进临床研究和应用至关重要。与传统材料相比,纳米材料由于其尺寸小、比表面积高和结构可变,具有更好的光学、磁性、电学和催化性能。将纳米材料纳入传感系统是提高灵敏度的一种有吸引力的方法,并且可以提供更高的传感器选择性和稳定性。在本文中,我们总结了基于纳米材料的外泌体检测方法的进展,包括电化学生物传感器、光电化学生物传感器、比色生物传感器、荧光生物传感器、化学发光生物传感器、电化学发光生物传感器、表面等离子体共振生物传感器和表面增强拉曼光谱生物传感器。此外,还讨论了外泌体检测方法未来的研究方向和挑战。我们希望本文将概述基于纳米材料的外泌体检测技术,并为疾病研究开辟新途径。图形摘要。

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