Development of fluorescence activatable nanosensors

M. Swierczewska, Xiaoyuan Chen
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Abstract

As new biomarkers and relationships among biomarkers for diseases are identified, the demand for highly sensitive and multiplexed detection increases. The goal of this study is to take advantage of the unique properties of nanoparticles to advance biomedical sensor systems of various bio- and environmental markers. Among the various detection signals, fluorescence is a major focus since it can be readily used as a research tool. More importantly, fluorescent dyes have unique interactions with nanoparticles. For example, when fluorophores are in close proximity of gold nanoparticles (AuNPs), 99.8% of fluorescence is quenched. Fluorophores can be released from the AuNP surface for an enhanced “on” fluorescence signal. The fluorophore-AuNP interaction has been adapted for use as an in vivo imaging probe for drug screening and protease activity.
荧光活化纳米传感器的研制
随着新的生物标志物和疾病生物标志物之间的关系的发现,对高灵敏度和多路检测的需求增加。本研究的目的是利用纳米颗粒的独特特性来推进各种生物和环境标记物的生物医学传感器系统。在各种检测信号中,荧光是一个主要的焦点,因为它可以很容易地作为一种研究工具。更重要的是,荧光染料与纳米粒子有独特的相互作用。例如,当荧光团靠近金纳米颗粒(AuNPs)时,99.8%的荧光被猝灭。荧光团可以从AuNP表面释放,以增强“开”荧光信号。荧光团- aunp相互作用已被用作药物筛选和蛋白酶活性的体内成像探针。
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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