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表面等离子体光纤光栅免疫传感:综述

Plasmonic Optical Fiber-Grating Immunosensing: A Review.

作者信息

Guo Tuan, González-Vila Álvaro, Loyez Médéric, Caucheteur Christophe

机构信息

Institute of Photonics Technology, Jinan University, Guangzhou 510632, China.

Electromagnetism and Telecommunication Department, University of Mons, Boulevard Dolez 31, 7000 Mons, Belgium.

出版信息

Sensors (Basel). 2017 Nov 26;17(12):2732. doi: 10.3390/s17122732.

Abstract

Plasmonic immunosensors are usually made of a noble metal (in the form of a film or nanoparticles) on which bioreceptors are grafted to sense analytes based on the antibody/antigen or other affinity mechanism. Optical fiber configurations are a miniaturized counterpart to the bulky Kretschmann prism and allow easy light injection and remote operation. To excite a surface plasmon (SP), the core-guided light is locally outcoupled. Unclad optical fibers were the first configurations reported to this end. Among the different architectures able to bring light in contact with the surrounding medium, a great quantity of research is today being conducted on metal-coated fiber gratings photo-imprinted in the fiber core, as they provide modal features that enable SP generation at any wavelength, especially in the telecommunication window. They are perfectly suited for use with cost-effective high-resolution interrogators, allowing both a high sensitivity and a low limit of detection to be reached in immunosensing. This paper will review recent progress made in this field with different kinds of gratings: uniform, tilted and eccentric short-period gratings as well as long-period fiber gratings. Practical cases will be reported, showing that such sensors can be used in very small volumes of analytes and even possibly applied to in vivo diagnosis.

摘要

表面等离子体免疫传感器通常由贵金属制成(呈薄膜或纳米颗粒形式),在其上面接枝生物受体,基于抗体/抗原或其他亲和机制来检测分析物。光纤配置是大型Kretschmann棱镜的小型对应物,能够轻松实现光注入和远程操作。为了激发表面等离子体(SP),纤芯传导的光会在局部发生外耦合。未包层的光纤是最早为此目的报道的配置。在能够使光与周围介质接触的不同结构中,目前正在对光纤纤芯中光致印记的金属涂层光纤光栅进行大量研究,因为它们提供了能够在任何波长(特别是在电信窗口)产生表面等离子体的模式特性。它们非常适合与经济高效的高分辨率询问器配合使用,在免疫传感中能够实现高灵敏度和低检测限。本文将回顾该领域在不同类型光栅方面取得的最新进展:均匀、倾斜和偏心短周期光栅以及长周期光纤光栅。将报告实际案例,表明此类传感器可用于极少量的分析物,甚至可能应用于体内诊断。

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