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SPR 生物传感技术的进展:智能层设计、复用概念、连续监测和体内传感方面的最新趋势概述。

Advancements in SPR biosensing technology: An overview of recent trends in smart layers design, multiplexing concepts, continuous monitoring and in vivo sensing.

机构信息

KU Leuven, Department of Biosystems - Biosensors Group, Willem de Croylaan 42, Box 2428, 3001, Leuven, Belgium.

KU Leuven, Department of Biosystems, MeBioS - Biophotonics, Kasteelpark Arenberg 30, Box 2456, 3001, Leuven, Belgium.

出版信息

Anal Chim Acta. 2020 Apr 1;1104:10-27. doi: 10.1016/j.aca.2019.12.067. Epub 2019 Dec 27.

Abstract

Inspired by the rapid progress and existing limitations in surface plasmon resonance (SPR) biosensing technology, we have summarized the recent trends in the fields of both chip-SPR and fiber optic (FO)-SPR biosensors during the past five years, primarily regarding smart layers design, multiplexing, continuous monitoring and in vivo sensing. Versatile surface chemistries, biomaterials and nanomaterials have been utilized thus far to generate smart layers on SPR platforms and as such achieve oriented immobilization of bioreceptors, improved fouling resistance and sensitivity enhancement, collectively aiming to improve the biosensing performance. Furthermore, often driven by the desires for time- and cost-effective quantification of multiple targets in a single measurement, efforts have been made to implement multiplex bioassays on SPR platforms. While this aspect largely remains difficult to attain, numerous alternative strategies arose for obtaining parallel analysis of multiple analytes in one single device. Additionally, one of the upcoming challenges in this field will be to succeed in using SPR platforms for continuous measurements and in vivo sensing, and as such match up other biosensing platforms where these goals have been already conquered. Overall, this review will give insight into multiple possibilities that have become available over the years for boosting the performance of SPR biosensors. However, because combining them all into one optimal sensor is practically not feasible, the final application needs to be considered while designing an SPR biosensor, as this will determine the requirements of the bioassay and will thus help in selecting the essential elements from the recent progress made in SPR sensing.

摘要

受表面等离子体共振(SPR)生物传感技术快速发展和现有局限性的启发,我们总结了过去五年中芯片 SPR 和光纤(FO)SPR 生物传感器领域的最新趋势,主要涉及智能层设计、复用、连续监测和体内传感。迄今为止,已经利用了多种表面化学、生物材料和纳米材料在 SPR 平台上生成智能层,从而实现生物受体的定向固定、提高抗污染能力和增强灵敏度,共同提高生物传感性能。此外,由于人们希望在单次测量中对多个目标进行时间和成本有效的定量分析,因此一直在努力在 SPR 平台上实现多路生物分析。虽然这方面在很大程度上仍然难以实现,但已经出现了许多替代策略来在单个设备中对多个分析物进行并行分析。此外,该领域即将面临的挑战之一是成功将 SPR 平台用于连续测量和体内传感,并与已经攻克这些目标的其他生物传感平台相匹配。总体而言,本综述将深入了解多年来提高 SPR 生物传感器性能的多种可能性。然而,由于实际上不可能将它们全部组合到一个最佳传感器中,因此在设计 SPR 生物传感器时需要考虑最终应用,因为这将决定生物分析的要求,并有助于从 SPR 传感的最新进展中选择必要的元素。

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