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Noble metal nanostructures in optical biosensors: Basics and their introduction to anti-doping detection

机译:光学生物传感器中的贵金属纳米结构:基础知识及其在反掺杂检测中的介绍

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摘要

Nanotechnology has illustrated significant potentials in biomolecular-sensing applications; particularly its introduction to anti-doping detection is of great importance. Illicit recreational drugs, substances that can be potentially abused, and drugs with dosage limitations according to the prohibited lists announced by the World Antidoping Agency (WADA) are becoming of increasing interest to forensic chemists. In this review, the theoretical principles of optical biosensors based on noble metal nanoparticles, and the transduction mechanism of commonly-applied plasmonic biosensors are covered. We review different classes of recently-developed plasmonic biosensors for analytic determination and quantification of illicit drugs in anti-doping applications. The important classes of illicit drugs include anabolic steroids, opioids, stimulants, and peptide hormones. The main emphasis is on the advantages that noble metal nano-particles bring to optical biosensors for signal enhancement and the development of highly sensitive (label-free) biosensors. In the near future, such optical biosensors may be an invaluable substitute for conventional anti-doping detection methods such as chromatography-based approaches, and may even be commercialized for routine anti-doping tests.
机译:纳米技术已经证明了在生物分子传感应用中的巨大潜力。特别是将其引入到反掺杂检测中非常重要。根据世界反兴奋剂机构(WADA)宣布的禁用清单,非法娱乐药物,可能被滥用的药物以及剂量限制的药物正变得越来越引起法医化学家的兴趣。本文综述了基于贵金属纳米粒子的光学生物传感器的理论原理以及常用的等离激元生物传感器的转导机理。我们审查了不同类别的最新开发的等离激元生物传感器,用于反兴奋剂应用中的非法药物的分析测定和定量。非法药物的重要类别包括合成代谢类固醇,阿片类药物,兴奋剂和肽激素。主要重点是贵金属纳米颗粒带给光学生物传感器以增强信号和开发高灵敏度(无标记)生物传感器的优势。在不久的将来,这种光学生物传感器可能会成为常规反掺杂检测方法(例如基于色谱的方法)的宝贵替代品,甚至可以商业化用于常规反掺杂测试。

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