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近红外染料掺杂二氧化硅纳米颗粒荧光优化的实验与理论研究

Experimental and theoretical studies of the optimisation of fluorescence from near-infrared dye-doped silica nanoparticles.

作者信息

Nooney Robert I, McCahey Ciara M N, Stranik Ondrej, Le Guevel Xavier, McDonagh Colette, MacCraith Brian D

机构信息

Biomedical Diagnostics Institute, National Centre for Sensor Research, School of Physical Sciences, Dublin City University, Glasnevin, Dublin 9, Ireland.

出版信息

Anal Bioanal Chem. 2009 Feb;393(4):1143-9. doi: 10.1007/s00216-008-2418-9. Epub 2008 Oct 10.

DOI:10.1007/s00216-008-2418-9
PMID:18846367
Abstract

There is substantial interest in the development of near-infrared dye-doped nanoparticles (NPs) for a range of applications including immunocytochemistry, immunosorbent assays, flow cytometry, and DNA/protein microarray analysis. The main motivation for this work is the significant increase in NP fluorescence that may be obtained compared with a single dye label, for example Cy5. Dye-doped NPs were synthesised and a reduction in fluorescence as a function of dye concentration was correlated with the occurrence of homo-Förster resonance energy transfer (HFRET) in the NP. Using standard analytical expressions describing HFRET, we modelled the fluorescence of NPs as a function of dye loading. The results confirmed the occurrence of HFRET which arises from the small Stokes shift of near-infrared dyes and provided a simple method for predicting the optimum dye loading in NPs for maximum fluorescence. We used the inverse micelle method to prepare monodispersed silica NPs. The NPs were characterised using dynamic light scattering, UV spectroscopy, and transmission electron microscopy (TEM). The quantum efficiency of the dye inside the NPs, as a function of dye loading, was also determined. The fluorescent NPs were measured to be approximately 165 times brighter than the free dye, at an optimal loading of 2% (w/w). These experimental results were in good agreement with model predictions.

摘要

人们对开发用于一系列应用(包括免疫细胞化学、免疫吸附测定、流式细胞术和DNA/蛋白质微阵列分析)的近红外染料掺杂纳米颗粒(NP)有着浓厚的兴趣。这项工作的主要动机是与单一染料标记(例如Cy5)相比,NP荧光可能会显著增加。合成了染料掺杂的NP,并将荧光随染料浓度的降低与NP中同型Förster共振能量转移(HFRET)的发生相关联。使用描述HFRET的标准分析表达式,我们将NP的荧光建模为染料负载量的函数。结果证实了由于近红外染料的小斯托克斯位移而产生的HFRET的发生,并提供了一种预测NP中最佳染料负载量以实现最大荧光的简单方法。我们使用反胶束法制备了单分散二氧化硅NP。使用动态光散射、紫外光谱和透射电子显微镜(TEM)对NP进行了表征。还确定了NP内染料的量子效率随染料负载量的变化。在2%(w/w)的最佳负载量下,测得荧光NP的亮度比游离染料亮约165倍。这些实验结果与模型预测非常吻合。

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