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金属增强荧光(MEF)用于生物传感器:一般方法及最新进展综述。

Metal enhanced fluorescence (MEF) for biosensors: General approaches and a review of recent developments.

机构信息

Program in Nanoscience and Technology, Graduate School of Convergence Science and Technology, Seoul National University, Seoul, Republic of Korea.

Department of Chemical and Biomolecular Engineering, Yonsei University, Seoul, Republic of Korea.

出版信息

Biosens Bioelectron. 2018 Jul 15;111:102-116. doi: 10.1016/j.bios.2018.04.007. Epub 2018 Apr 7.

Abstract

Fluorescence-based biosensor platforms have been intensively investigated not only to increase the sensitivity but also to improve the performance of biosensors. By exploiting metal from the macroscopic down to the nanoscopic surface, various architectures have been devised to manipulate fluorescence signals (enhancement, quenching) within near-optical fields. The interaction of a metallic surface with proximal fluorophores (in the range of 5-90 nm) has beneficial effects on optical properties such as an increased quantum yield, improved photostability and a reduced lifetime of fluorophores. This phenomenon called metal-enhanced fluorescence (MEF) has been extensively used in biosensory applications. However, their applications for biological analysis practically remain challenging in biological microenvironments. Therefore, this review primarily provides a general overview of MEF biosensor systems from the basic mechanism to state-of-the-art biological applications. The review also covers the pros and cons of MEF biosensor as well as discussions about further directions in biological perspectives.

摘要

基于荧光的生物传感器平台不仅被深入研究以提高灵敏度,而且还被用于改善生物传感器的性能。通过利用从宏观到纳米表面的金属,可以设计出各种结构来在近光场中操纵荧光信号(增强、猝灭)。金属表面与近邻荧光团(在 5-90nm 范围内)的相互作用对光学性质有有益的影响,例如增加量子产率、提高光稳定性和减少荧光团的寿命。这种现象称为金属增强荧光(MEF),已广泛应用于生物传感应用中。然而,它们在生物微环境中的生物分析中的应用实际上仍然具有挑战性。因此,本综述主要从基本机制到最新的生物应用提供了 MEF 生物传感器系统的概述。该综述还涵盖了 MEF 生物传感器的优缺点,并讨论了在生物学方面的进一步发展方向。

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