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基于核黄素稳定的金纳米簇的比率型荧光探针用于灵敏、选择性和可逆检测铜(II)。

A ratiometric fluorescent probe for sensitive, selective and reversible detection of copper (II) based on riboflavin-stabilized gold nanoclusters.

机构信息

Lab of Biosystems and Microanalysis, State Key Laboratory of Bioreactor Engineering, East China University of Science & Technology, Shanghai 200237, China.

出版信息

Talanta. 2013 Dec 15;117:399-404. doi: 10.1016/j.talanta.2013.09.034. Epub 2013 Sep 25.

DOI:10.1016/j.talanta.2013.09.034
PMID:24209359
Abstract

Most of the copper (II) fluorescent probes are based on the measurement of fluorescence at a single wavelength, which may be influenced by variations in the sample environment. To the end, the ratiometric fluorescent measurement, which involves the simultaneous measurement of two fluorescence signals at different wavelengths followed by calculation of their intensity ratio, can effectively eliminate the adverse effects on fluorescence signals and give greater precision to the data analysis relative to single-channel detection. In this work, we prepared novel luminescent gold nanoclusters (AuNCs) utilizing vitamin B2 (riboflavin) as stabilizer by a simple, rapid and one-pot green (low-toxicity materials use) procedure. The as-prepared riboflavin-AuNCs (Ri-AuNCs) solution can be luminescent exhibiting two fluorescence emission peaks at 530 nm and around 840 nm with excitation at 375 nm, however, in the presence of Cu(2+), the fluorescence of the Ri-AuNCs was found to be quenched at around 840 nm and enhanced at 530 nm by Cu(2+). The resultant ratiometric fluorescent response can provide a novel sensory probe for the determination of Cu(2+). The present probe had excellent selectivity in the presence of several cations. The probe revealed a detection limit of 0.9 μM of Cu(2+). Moreover, our proposed probe can reversibly switch between the "on" and "off" states through the addition of Cu(2+) and EDTA, which is reusable in practical application. Results and method reported here provide a unique strategy for performance of ratiometric assays demonstrated with a AuNCs-based fluorescent probe, which expands the application of AuNCs.

摘要

大多数铜(II)荧光探针基于在单个波长下测量荧光,这可能会受到样品环境变化的影响。为了克服这一问题,可以采用比率荧光测量法,同时在不同波长下测量两个荧光信号,并计算它们的强度比,从而有效地消除荧光信号的不利影响,并使数据分析具有更高的精度。在这项工作中,我们使用简单、快速且一锅法的绿色(使用低毒性材料)程序,以维生素 B2(核黄素)作为稳定剂制备了新型发光金纳米团簇(AuNCs)。所制备的核黄素-AuNCs(Ri-AuNCs)溶液可以发光,在 375nm 激发下,在 530nm 和 840nm 左右有两个荧光发射峰,然而,在存在 Cu(2+)的情况下,Ri-AuNCs 的荧光在 840nm 左右被猝灭,在 530nm 处被 Cu(2+)增强。这种比率荧光响应可以为 Cu(2+)的测定提供一种新型的传感探针。在存在几种阳离子的情况下,本探针具有优异的选择性。该探针对 Cu(2+)的检测限为 0.9μM。此外,我们提出的探针可以通过添加 Cu(2+)和 EDTA 来在“开”和“关”状态之间可逆切换,这在实际应用中是可重复使用的。这里报告的结果和方法为基于 AuNCs 的荧光探针的比率分析提供了一种独特的策略,扩展了 AuNCs 的应用。

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