Real-time and Label-free Bio-sensing of Molecular Interactions by Surface Plasmon Resonance: A Laboratory Medicine Perspective.

Q1 Biochemistry, Genetics and Molecular Biology
Clinical Biochemist Reviews Pub Date : 2012-11-01
Erik Helmerhorst, David J Chandler, Matt Nussio, Cyril D Mamotte
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Abstract

Radioactive, chromogenic, fluorescent and other labels have long provided the basis of detection systems for biomolecular interactions including immunoassays and receptor binding studies. However there has been unprecedented growth in a number of powerful label free biosensor technologies over the last decade. While largely at the proof-of-concept stage in terms of clinical applications, the development of more accessible platforms may see surface plasmon resonance (SPR) emerge as one of the most powerful optical detection platforms for the real-time monitoring of biomolecular interactions in a label-free environment.In this review, we provide an overview of SPR principles and current and future capabilities in a diagnostic context, including its application for monitoring a wide range of molecular markers of disease. The advantages and pitfalls of using SPR to study biomolecular interactions are discussed, with particular emphasis on its potential to differentiate subspecies of analytes and the inherent ability for quantitation through calibration-free concentration analysis (CFCA). In addition, recent advances in multiplex applications, high throughput arrays, miniaturisation, and enhancements using noble metal nanoparticles that promise unprecedented sensitivity to the level of single molecule detection, are discussed.In summary, while SPR is not a new technique, technological advances may see SPR quickly emerge as a highly powerful technology, enabling rapid and routine analysis of molecular interactions for a diverse range of targets, including those with clinical applicability. As the technology produces data quickly, in real-time and in a label-free environment, it may well have a significant presence in future developments in lab-on-a-chip technologies including point-of-care devices and personalised medicine.

通过表面等离子体共振实时和无标记的分子相互作用生物传感:实验室医学的观点。
放射性、显色、荧光和其他标记长期以来为生物分子相互作用的检测系统提供了基础,包括免疫测定和受体结合研究。然而,在过去十年中,许多强大的无标签生物传感器技术出现了前所未有的增长。虽然在临床应用方面主要处于概念验证阶段,但更易于使用的平台的开发可能会使表面等离子体共振(SPR)成为最强大的光学检测平台之一,用于实时监测无标签环境中的生物分子相互作用。在这篇综述中,我们概述了SPR的原理以及目前和未来在诊断方面的能力,包括它在监测各种疾病分子标记物方面的应用。讨论了使用SPR研究生物分子相互作用的优点和缺陷,特别强调了SPR在区分分析物亚种方面的潜力,以及通过无校准浓度分析(CFCA)进行定量的固有能力。此外,本文还讨论了多路应用、高通量阵列、小型化和贵金属纳米颗粒增强等方面的最新进展,这些技术有望提高单分子检测水平的空前灵敏度。总之,虽然SPR不是一项新技术,但技术进步可能会使SPR迅速成为一项强大的技术,能够快速和常规地分析各种靶标的分子相互作用,包括那些具有临床适用性的靶标。由于该技术可以快速、实时、无标签地生成数据,因此它很可能在芯片实验室技术的未来发展中占有重要地位,包括即时医疗设备和个性化医疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Clinical Biochemist Reviews
Clinical Biochemist Reviews Biochemistry, Genetics and Molecular Biology-Clinical Biochemistry
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