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Gold-nanoparticle-based miniaturized laser-induced fluorescence probe for specific DNA hybridization detection: studies on size-dependent optical properties

机译:基于金纳米粒子的微型激光诱导荧光探针,用于特异性DNA杂交检测:尺寸依赖性光学性质的研究

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摘要

A compact, highly specific, inexpensive and user friendly optical fibre laser-induced fluorescence (LIF) sensor based on fluorescence quenching by nanoparticles has been developed to detect single-strand (ss-) DNA hybridization at femtomolar level. The fluorescence of fluorophore-tagged ss- DNA increases by a factor of 80 when it binds to a complimentary DNA, while the addition of single-base mismatch DNA had no effect on the fluorescence efficiency. We present theoretical and experimental results on dye fluorescence quenching induced by gold nanoparticles having different particle sizes. Fluorescence spectra clearly show that the quenching efficiency decreases with increasing size of the gold nanoparticles and increasing the distance between dye and nanoparticles. The mechanism of size- and distant-dependent fluorescence quenching has been discussed. Effects of various influential experimental parameters and configurations were investigated in order to optimize and miniaturize the sensor performance.
机译:已经开发了一种基于纳米粒子荧光猝灭的紧凑型,高度特异性,廉价且用户友好的光纤激光诱导荧光(LIF)传感器,用于检测飞摩尔级的单链(ss-)DNA杂交。荧光团标记的ss-DNA与互补DNA结合后,其荧光强度增加80倍,而单碱基错配DNA的添加对荧光效率没有影响。我们介绍了由具有不同粒径的金纳米粒子诱导的染料荧光猝灭的理论和实验结果。荧光光谱清楚地表明,猝灭效率随着金纳米颗粒尺寸的增加和染料与纳米颗粒之间距离的增加而降低。已经讨论了大小依赖性和远距离依赖性荧光猝灭的机理。为了优化和最小化传感器性能,研究了各种有影响的实验参数和配置的影响。

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